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Articles 33 registres trobats  1 - 10següentfinal  anar al registre:
1.
19 p, 8.1 MB Formation of an invasion-permissive matrix requires TGFβ/SNAIL1-regulated alternative splicing of fibronectin / Franco Valls, Héctor (Institut Hospital del Mar d'Investigacions Mèdiques) ; Tusquets Uxó, Elsa (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM)) ; Sala, Laura (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM)) ; Val, Maria (Hospital Universitari Vall d'Hebron. Institut de Recerca) ; Peña, Raúl (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM)) ; Iaconcig, Alessandra (International Centre for Genetic Engineering and Biotechnology (ICGEB)) ; Villarino, Álvaro (Centro de Investigación Biomédica en Red de Enfermedades Raras) ; Jiménez Arriola, Martín (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM)) ; Massó, Pere (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM)) ; Trincado Alonso, Juan Luis, 1987- (Institut Germans Trias i Pujol. Institut de Recerca contra la Leucèmia Josep Carreras) ; Eyras, Eduardo (John Curtin School of Medical Research. Australian National University) ; Muro, Andrés F. (International Centre for Genetic Engineering and Biotechnology (ICGEB)) ; Otero, Jorge (Centro de Investigación Biomédica en Red de Enfermedades Raras) ; Garcia de Herreros, Antonio (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM)) ; Baulida, Josep (Programa de Recerca en Càncer. Hospital del Mar Research Institute (IMIM))
Background: As in most solid cancers, the emergence of cells with oncogenic mutations in the mammary epithelium alters the tissue homeostasis. Some soluble factors, such as TGFβ, potently modify the behavior of healthy stromal cells. [...]
2023 - 10.1186/s13058-023-01736-y
Breast cancer research, Vol. 25 Núm. 1 (december 2023) , p. 143  
2.
18 p, 1.6 MB Quorum sensing network in clinical strains of A. baumannii : AidA is a new quorum quenching enzyme / López Díaz, María (Red Española de Investigación en Patologías Infecciosas (REIPI)) ; Mayer, Celia (Universidade de Santiago de Compostela) ; Fernández García, Laura (Complejo Hospitalario Universitario de A Coruña) ; Blasco, Lucía (Complejo Hospitalario Universitario de A Coruña) ; Muras, Andrea (Universidade de Santiago de Compostela) ; Ruiz, Federico M. (Centro de Investigaciones Biológicas (CIB-CSIC)) ; Bou, German (Red Española de Investigación en Patologías Infecciosas (REIPI)) ; Otero, Ana (Universidade de Santiago de Compostela) ; Tomas, Maria (Red Española de Investigación en Patologías Infecciosas (REIPI)) ; Rodríguez-Baño, Jesús (Red Española de Investigación en Patologías Infecciosas (REIPI)) ; Pascual Hernández, Álvaro (Red Española de Investigación en Patologías Infecciosas (REIPI)) ; Fernández Cuenca, Felipe (Red Española de Investigación en Patologías Infecciosas (REIPI)) ; Pachón, Jerónimo (Hospital Universitario Virgen del Rocío (Sevilla, Andalusia)) ; Cisneros, José Miguel (Hospital Universitario Virgen del Rocío (Sevilla, Andalusia)) ; Garnacho, José (Hospital Universitario Virgen del Rocío (Sevilla, Andalusia)) ; Gutierrez Pizarraya, Antonio (Hospital Universitario Virgen del Rocío (Sevilla, Andalusia)) ; Márquez Vácaro, Juan Antonio (Hospital Universitario Virgen del Rocío (Sevilla, Andalusia)) ; Martínez Martínez, Luis (Hospital Universitario Marqués de Valdecilla (Santander, Cantabria)) ; Cano, María Eliecer (Hospital Universitario Marqués de Valdecilla (Santander, Cantabria)) ; Fariñas, M.Carmen (Hospital Universitario Marqués de Valdecilla (Santander, Cantabria)) ; Vila Estapé, Jordi (Hospital Clínic i Provincial de Barcelona) ; Sánchez Porto, Antonio (Hospital SAS La Línea) ; Esteban Meruendano, Gloria (Hospital SAS La Línea) ; Barbeyto Vales, Luis (Hospital SAS La Línea) ; Casas Ciria, Javier (Hospital SAS La Línea) ; Vallejo, Luis (Hospital SAS La Línea) ; Fernández Pérez, Begoña (Complejo Hospitalario de Ourense) ; Villar-Chao, José Carlos (Complejo Hospitalario de Ourense) ; Padilla Ortega, Belén (Hospital General Universitario Gregorio Marañón) ; Cercenado Mansilla, Emilia (Hospital Gregorio Marañón (Madrid)) ; García Irure, José Javier (Complejo Hospitalario de Navarra) ; Jiménez, Alfonso del Arco (Hospital Costa del Sol-Marbella) ; Gimeno Cardona, Concepción (Hospital General de València) ; Valía, Juan Carlos (Hospital General de València) ; Tormo, Nuria (Hospital General de València) ; Abril, Vicente (Hospital General de València) ; Rifa, Josefina (Hospital General de València) ; Martinez Garcia, Maria Jesus (Hospital General de València) ; Vilaró Pujals, Joseph (Consorci Hospitalari de Vic) ; Navarro Aguirre, Marian (Consorci Hospitalari de Vic) ; Vilamala, Ana (Consorci Hospitalari de Vic) ; Jiménez Alfaro, José Antonio (Policlínica Guipúzkoa) ; Reviejo Jaca, Carlos (Policlínica Guipúzkoa) ; Marín Casanova, Pilar (Hospital Universitario Puerta del Mar (Cadis, Andalusia)) ; Guerreo, Francisca (Hospital Universitario Puerta del Mar (Cadis, Andalusia)) ; Shaw, Evelyn (Hospital Universitario Puerta del Mar (Cadis, Andalusia)) ; Plasencia, Virginia (Hospital Universitario Puerta del Mar (Cadis, Andalusia)) ; Nebreda Mayoral, Teresa (Complejo Hospitalario de Soria) ; Fernández Calavia, María José (Complejo Hospitalario de Soria) ; García de Cruz, Susana (Complejo Hospitalario de Soria) ; Aldea Mansilla, Carmen (Complejo Hospitalario de Soria) ; Merino de Lucas, Esperanza (Hospital General Universitario de Alicante (Alacant, País Valencià)) ; Zorraquino, Alfredo (Hospital General Universitario de Alicante (Alacant, País Valencià)) ; Reus Bañuls, Sergio (Hospital General Universitario de Alicante (Alacant, País Valencià)) ; Garduno Eseverri, Eugenio (Hospital Infanta Cristina) ; López Sánchez, Luis (Hospital Infanta Cristina) ; Fleites Gutiérrez, Ana (Hospital Universitario Central de Asturias) ; Rodríguez Guardado, Azucena (Hospital Universitario Central de Asturias) ; Moreno, Alfonso (Hospital Universitario Central de Asturias) ; García-Arenzana Anguera, José María (Hospital de Donostia (Sant Sebastià, País Basc)) ; López Palmero, Serafín (Complejo Hospitalario Torrecárdenas (Almeria)) ; Rodríguez Maresca, Manuel (Complejo Hospitalario Torrecárdenas (Almeria)) ; García Garrote, Fernando (Complejo Hospitalario Xeral-Calde Lugo) ; Varela Otero, José (Complejo Hospitalario Xeral-Calde Lugo) ; Alonso, María del Pilar (Complejo Hospitalario Xeral-Calde Lugo) ; Vidal Verdú, Elisa (Hospital Universitario Reina Sofía (Córdoba, Espanya)) ; Rodríguez López, Fernando (Hospital Universitario Reina Sofía (Córdoba, Espanya)) ; Pardo Sánchez, Fernanda (Hospital Universitario Santiago Compostela) ; Ferrer Vizoso, E. (Hospital Universitario Santiago Compostela) ; Regueiro Garcia, B. (Hospital Universitario Santiago Compostela) ; Gurguí, Mercè (Institut d'Investigació Biomèdica Sant Pau) ; Pericas, Roser (Hospital de la Santa Creu i Sant Pau (Barcelona, Catalunya)) ; Pomar, Virginia (Institut d'Investigació Biomèdica Sant Pau) ; Olaechea Astigarraga, Pedro María (Hospital de Galdakao (Usansolo, Biscaia)) ; Ayarza Igartua, Rafael (Hospital de Galdakao (Usansolo, Biscaia)) ; Maciá Romero, María Dolores (Hospital Universitari Son Dureta (Palma de Mallorca, Balears)) ; Ruíz de Gopegui-Bordes, Enrique (Hospital Universitari Son Dureta (Palma de Mallorca, Balears)) ; Sánchez Romero, María Isabel (Hospital Puerta de Hierro (Madrid)) ; García Mata, Jesús (Hospital Juan Grande) ; Goyanes, María Jesús (Hospital Juan Grande) ; Morales Mateos, Cristina (Hospital Juan Grande) ; Hernández Quero, José (Hospital Universitario San Cecilio (Granada)) ; Escobar Lara, Trinidad (Hospital Universitario San Cecilio (Granada)) ; Ballester-Bastardie, Frederic (Hospital Universitari Sant Joan de Reus (Tarragona)) ; Iftimie, Simona Mihaela (Hospital Universitari Sant Joan de Reus (Tarragona)) ; Pujol Bajador, Isabel (Hospital Universitari Sant Joan de Reus (Tarragona)) ; Galán Navarro, María Isabel (Hospital de Motril) ; Cádiz Gurrea, María de la Luz (Hospital de Motril) ; Amores Antequera, Carmen (Hospital San Agustín de Avilés) ; Gómez, Montserrat (Hospital San Agustín de Avilés) ; Cantudo, Purificación (Hospital San Agustín de Avilés) ; Martí Salas, Carmina (Hospital General de Granollers) ; Cuquet Peragosa, Jordi (Hospital General de Granollers) ; Moreno Flores, Antonio (Hospital General de Granollers) ; Anibarro, Luis (Hospital General de Granollers) ; Hernando Real, Susana (Hospital de Segovia) ; Carrero González, Pablo A. (Hospital de Segovia) ; Pallarés González, María Angeles (Complejo Hospitalario Universitario de Pontevedra) ; Rodríguez Fernández, Sergio (Complejo Hospitalario Universitario de Pontevedra) ; Pujol, Miquel (Hospital Universitari de Bellvitge) ; Tubau, Fe (Hospital Universitari de Bellvitge) ; Nuno Alvarez, Enrique (Hospital Universitario Virgen de la Victoria (Màlaga, Andalusia)) ; Ortega Torres, María (Hospital Universitario Virgen de la Victoria (Màlaga, Andalusia)) ; Giner Almaraz, Salvador (Hospital Doctor Moliner) ; Roca Castelló, María Rosa (Hospital Doctor Moliner) ; Castillo, Manuela (Hospital Doctor Moliner) ; Hortelano, Elena (Hospital Doctor Moliner) ; Chaves Sánchez, Fernando (Hospital 12 de Octubre (Madrid)) ; García Reyne, Ana (Hospital 12 de Octubre (Madrid)) ; Horcajada, Juan Pablo (Hospital del Mar (Barcelona, Catalunya)) ; Segura, Concha (Hospital del Mar (Barcelona, Catalunya)) ; Sierra Dorado, Gema (Hospital San Agustín de Avilés) ; Yano Escudero, Raquel (Hospital San Agustín de Avilés) ; Dorta-Hung, María Elena (Complejo Hospitalario Materno Insular de Gran Canaria) ; Cristóbal del Rosario, Q. (Complejo Hospitalario Materno Insular de Gran Canaria) ; Universitat Autònoma de Barcelona
Acinetobacter baumannii is an important pathogen that causes nosocomial infections generally associated with high mortality and morbidity in Intensive Care Units (ICUs). Currently, little is known about the Quorum Sensing (QS)/Quorum Quenching (QQ) systems of this pathogen. [...]
2017 - 10.1371/journal.pone.0174454
PloS one, Vol. 12 Núm. 3 (march 2017) , p. e0174454  
3.
16 p, 1.4 MB CkP1 bacteriophage, a S16-like myovirus that recognizes Citrobacter koseri lipopolysaccharide through its long tail fibers / Oliveira, Hugo (LABBELS -Associate Laboratory) ; Santos, Sílvio (LABBELS -Associate Laboratory) ; Pires, Diana P. (LABBELS -Associate Laboratory) ; Boeckaerts, Dimitri (Ghent University) ; Pinto, Graça (LABBELS -Associate Laboratory) ; Domingues, Rita (LABBELS -Associate Laboratory) ; Otero Carrera, Jennifer (Universitat Autònoma de Barcelona. Departament de Genètica i de Microbiologia) ; Briers, Yves (Ghent University) ; Lavigne, Rob (KU Leuven) ; Schmelcher, Mathias (ETH Zurich) ; Dötsch, Andreas (Max Rubner-Institute) ; Azeredo, Joana (LABBELS -Associate Laboratory)
Citrobacter koseri is an emerging Gram-negative bacterial pathogen, which causes urinary tract infections. We isolated and characterized a novel S16-like myovirus CKP1 (vB_CkoM_CkP1), infecting C. koseri. [...]
2023 - 10.1007/s00253-023-12547-8
Applied Microbiology and Biotechnology, Vol. 107 (May 2023) , p. 3621-3636  
4.
11 p, 4.4 MB Lung Extracellular Matrix Hydrogels Enhance Preservation of Type II Phenotype in Primary Alveolar Epithelial Cells / Marhuenda, Esther (Centro de Investigación Biomédica en Red de Enfermedades Raras) ; Villarino, Alvaro (Universitat de Barcelona) ; Narciso, Maria Leonor (Universitat de Barcelona) ; Camprubí-Rimblas, Marta (Parc Taulí Hospital Universitari. Institut d'Investigació i Innovació Parc Taulí (I3PT)) ; Farré, Ramon (Institut d'Investigacions Biomèdiques August Pi i Sunyer) ; Gavara, Núria (Universitat de Barcelona) ; Artigas Raventós, Antoni (Parc Taulí Hospital Universitari. Institut d'Investigació i Innovació Parc Taulí (I3PT)) ; Almendros, Isaac (Institut d'Investigacions Biomèdiques August Pi i Sunyer) ; Otero, Jorge (Universitat de Barcelona) ; Universitat Autònoma de Barcelona
One of the main limitations of in vitro studies on lung diseases is the difficulty of maintaining the type II phenotype of alveolar epithelial cells in culture. This fact has previously been related to the translocation of the mechanosensing Yes-associated protein (YAP) to the nuclei and Rho signaling pathway. [...]
2022 - 10.3390/ijms23094888
International journal of molecular sciences, Vol. 23 (april 2022)  
5.
19 p, 1.1 MB Predicting Recurrence and Progression in Patients with Non-Muscle-Invasive Bladder Cancer : Systematic Review on the Performance of Risk Stratification Models / Guerrero-Ramos, F. (Hospital Universitario 12 de Octubre (Madrid). Servicio de Urología) ; Subiela, J.D. (Hospital Ramón y Cajal. Servicio de Urología. Instituto Ramón y Cajal de Investigación Sanitaria. Universidad De Alcalá) ; Rodríguez Faba, Óscar (Institut d'Investigació Biomèdica Sant Pau) ; Aumatell, Julia (Fundació Puigvert. Servicio de Urología) ; Manfredi, Celeste (Unit Of Urology. Department Of Woman. Child And General And Specialized Surgery. University Of Campania 'Luigi Vanvitelli') ; Bozzini, Giorgia (Department Of Urology. Asst Lariana Ospedale Sant'Anna) ; Romero-Otero, Javier (Department Of Urology. Hospital Universitario Hm Sanchinarro) ; Couñago, Felipe (Hospital La Milagrosa)
BACKGROUND: Several classifications have been reported to stratify non-muscle-invasive bladder cancer (NMIBC) in risk groups according to the probability of recurrence and progression. OBJECTIVE: To systematically review the current evidence regarding risk stratification of NMIBC. [...]
2022 - 10.3233/BLC-220055
Bladder Cancer, Vol. 8 Núm. 4 (2022) , p. 339-357  
6.
25 p, 627.1 KB How frequent are these verbs? : an exploration of lexical frequency in bilingual children's acquisition of subject-verb agreement morphology / Goldin, Michele (Touro University (Estats Units d'Amèrica)) ; López Otero, Julio César (University of Houston (Estats Units d'Amèrica)) ; Hur, Esther (Baylor University (Estats Units d'Amèrica))
In monolingual (L1) acquisition, children produce target-like subject-verb agreement early in development in both Spanish (Grinstead 1998) and English (Guasti 2002). However, in heritage simultaneous bilinguals (2L1) and child second language acquirers (L2), agreement morphology shows variability (Goldin 2020; Herschensohn & Stevenson 2005) due to age of acquisition (AoA) effects. [...]
2023 - 10.5565/rev/isogloss.194
Isogloss, Vol. 9 Núm. 2 (2023) , p. 1-25 (Articles)  
7.
8 p, 1.3 MB Comparison of a human acellular dermal matrix and a polypropylene mesh for pelvic floor reconstruction : a randomized trial study in a rabbit model / Peró, Marta (Institut d'Investigació Biomèdica Sant Pau) ; Castells-Sala, Cristina (Institut d'Investigació Biomèdica Sant Pau) ; Alserawan, Leticia (Hospital Clínic i Provincial de Barcelona) ; Casaní, Laura (Institut d'Investigació Biomèdica Sant Pau) ; Juan Babot, Josep Oriol (Institut d'Investigació Biomèdica Sant Pau) ; Jorba, Ignasi (Eindhoven University of Technology. Department of Biomedical Engineering, Institute for Complex Molecular Systems (ICMS)) ; Pérez, Maria Luisa (Hospital Universitari Vall d'Hebron. Institut de Recerca) ; Moga, Esther (Institut d'Investigació Biomèdica Sant Pau) ; Otero, Jorge (Universitat de Barcelona) ; López-Chicón, Patricia (Institut d'Investigació Biomèdica Sant Pau) ; Badimon, Lina (Institut d'Investigació Biomèdica Sant Pau) ; Vilarrodona, Anna (Hospital Universitari Vall d'Hebron. Institut de Recerca) ; Porta-Roda, Oriol (Universitat de Barcelona. Hospital Mútua de Terrassa) ; Universitat Autònoma de Barcelona
Non-absorbable polypropylene (PP) meshes have been widely used in surgical reconstruction of the pelvic floor disorders. However, they are associated with serious complications. Human acellular dermal matrices (hADM) have demonstrated safety and efficacy in reconstructive medicine, but their suitability and efficacy at vaginal level is not known. [...]
2022 - 10.1038/s41598-022-22190-4
Scientific reports, Vol. 12 (november 2022)  
8.
6 p, 289.0 KB Search for the rare decay Bs 0→μ+μ- / Abazov, V. M. (Joint Institute for Nuclear Research) ; Abbott, B. (University of Oklahoma) ; Abolins, M. (Michigan State University) ; Acharya, B. S. (Tata Institute of Fundamental Research) ; Adams, Maurice Lawrence (University of Illinois at Chicago) ; Adams, Todd (Florida State University) ; Alexeev, G. D. (Joint Institute for Nuclear Research) ; Alkhazov, G. (Petersburg Nuclear Physics Institute) ; Alton, A. (University of Michigan) ; Alverson, George (Northeastern University) ; Alves, Gelio (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Ancu, L. S. (Radboud University Nijmegen/NIKHEF) ; Aoki, M. (Fermi National Accelerator Laboratory) ; Arnoud, Y. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3. Institut National Polytechnique de Grenoble) ; Arov, M. (Louisiana Tech University) ; Askew, Andrew (Florida State University) ; Åsman, B. (Stockholm University. Stockholm and Uppsala University) ; Atramentov, O. (Rutgers University) ; Ávila, Carlos (Universidad de los Andes) ; BackusMayes, J. (University of Washington) ; Badaud, F. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Bagby, L. (Fermi National Accelerator Laboratory) ; Baldin, B. (Fermi National Accelerator Laboratory) ; Bandurin, D. V. (Florida State University) ; Banerjee, Sw (Tata Institute of Fundamental Research) ; Barberis, E. (Northeastern University) ; Barfuss, A. F. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Baringer, P. (University of Kansas) ; Barreto, J. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Bartlett, J. F. (Fermi National Accelerator Laboratory) ; Bassler, U. (CEA. Irfu. SPP) ; Beale, S. (York University) ; Bean, A. (University of Kansas) ; Begalli, M. (Universidade do Estado do Rio de Janeiro) ; Begel, M. (Brookhaven National Laboratory) ; Belanger-Champagne, C. (Stockholm University. Stockholm and Uppsala University) ; Bellantoni, L. (Fermi National Accelerator Laboratory) ; Benitez, J. A. (Michigan State University) ; Beri, S. B. (Panjab University) ; Bernardi, G. (LPNHE. Universités Paris VI and VII. CNRS/IN2P3) ; Bernhard, R. (Physikalisches Institut. Universität Freiburg) ; Bertram, I. (Lancaster University) ; Besançon, M. (CEA. Irfu. SPP) ; Beuselinck, R. (Imperial College London) ; Bezzubov, V. A. (Institute for High Energy Physics) ; Bhat, P. C. (Fermi National Accelerator Laboratory) ; Bhatnagar, V. (Panjab University) ; Blazey, G. (Northern Illinois University) ; Blessing, S. (Florida State University) ; Bloom, K. (University of Nebraska) ; Boehnlein, A. (Fermi National Accelerator Laboratory) ; Boline, D. (State University of New York) ; Bolton, T. A. (Kansas State University) ; Boos, E. E. (Moscow State University) ; Borissov, G. (Lancaster University) ; Bose, T. (Boston University) ; Brandt, A. (University of Texas) ; Brandt, O. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Brock, R. (Michigan State University) ; Brooijmans, G. (Columbia University) ; Bross, A. (Fermi National Accelerator Laboratory) ; Brown, D. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Bu, X. B. (University of Science and Technology of China) ; Buchholz, D. (Northwestern University) ; Buehler, M. (University of Virginia) ; Buescher, V. (Institut für Physik. Universität Mainz) ; Bunichev, V. (Moscow State University) ; Burdin, S. (Lancaster University) ; Burnett, T. H. (University of Washington) ; Buszello, C. P. (Imperial College London) ; Calfayan, P. (Ludwig-Maximilians-Universität München) ; Calpas, B. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Calvet, S. (LAL. Université Paris-Sud. CNRS/IN2P3) ; Camacho-Pérez, E. (CINVESTAV) ; Cammin, J. (University of Rochester) ; Carrasco-Lizarraga, M. A. (CINVESTAV) ; Carrera, E. (Florida State University) ; Casey, B. C. K. (Fermi National Accelerator Laboratory) ; Castilla-Valdez, H. (CINVESTAV) ; Chakrabarti, S. (State University of New York) ; Chakraborty, D. (Northern Illinois University) ; Chan, K. M. (University of Notre Dame) ; Chandra, A. (Rice University) ; Chen, G. (University of Kansas) ; Chevalier-Théry, S. (CEA. Irfu. SPP) ; Cho, D. K. (Brown University) ; Cho, S. W. (Korea Detector Laboratory. Korea University) ; Choi, S. (Korea Detector Laboratory. Korea University) ; Choudhary, B. (Delhi University) ; Christoudias, T. (Imperial College London) ; Cihangir, S. (Fermi National Accelerator Laboratory) ; Claes, D. (University of Nebraska) ; Clutter, J. (University of Kansas) ; Cooke, M. (Fermi National Accelerator Laboratory) ; Cooper, W. E. (Fermi National Accelerator Laboratory) ; Corcoran, M. (Rice University) ; Couderc, F. (CEA. Irfu. SPP) ; Cousinou, M. C. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Croc, A. (CEA. Irfu. SPP) ; Cutts, D. (Brown University) ; Ćwiok, M. (University College Dublin) ; Das, A. (University of Arizona) ; Davies, G. (Imperial College London) ; De, K. (University of Texas) ; de Jong, S. J. (Radboud University Nijmegen/NIKHEF) ; De La Cruz-Burelo, E. (CINVESTAV) ; Déliot, F. (CEA. Irfu. SPP) ; Demarteau, M. (Fermi National Accelerator Laboratory) ; Demina, R. (University of Rochester) ; Denisov, D. (Fermi National Accelerator Laboratory) ; Denisov, S. P. (Institute for High Energy Physics) ; Desai, S. (Fermi National Accelerator Laboratory) ; DeVaughan, K. (University of Nebraska) ; Diehl, H. T. (Fermi National Accelerator Laboratory) ; Diesburg, M. (Fermi National Accelerator Laboratory) ; Dominguez, Aaron (University of Nebraska) ; Dorland, T. (University of Washington) ; Dubey, A. (Delhi University) ; Dudko, L. V. (Moscow State University) ; Duggan, D. (Rutgers University) ; Duperrin, A. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Dutt, S. (Panjab University) ; Dyshkant, A. (Northern Illinois University) ; Eads, M. (University of Nebraska) ; Edmunds, D. (Michigan State University) ; Ellison, J. (University of California Riverside) ; Elvira, V. D. (Fermi National Accelerator Laboratory) ; Enari, Y. (LPNHE. Universités Paris VI and VII. CNRS/IN2P3) ; Eno, S. (University of Maryland) ; Evans, H. (Indiana University) ; Evdokimov, A. (Brookhaven National Laboratory) ; Evdokimov, V. N. (Institute for High Energy Physics) ; Facini, G. (Northeastern University) ; Ferapontov, A. V. (Brown University) ; Ferbel, T. (University of Rochester) ; Fiedler, F. (Institut für Physik. Universität Mainz) ; Filthaut, F. (Radboud University Nijmegen/NIKHEF) ; Fisher, W. (Michigan State University) ; Fisk, H. E. (Fermi National Accelerator Laboratory) ; Fortner, M. (Northern Illinois University) ; Fox, H. (Lancaster University) ; Fuess, S. (Fermi National Accelerator Laboratory) ; Gadfort, T. (Brookhaven National Laboratory) ; Garcia-Bellido, A. (University of Rochester) ; Gavrilov, V. (Institute for Theoretical and Experimental Physics) ; Gay, P. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Geist, W. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Geng, W. (Michigan State University) ; Gerbaudo, D. (Princeton University) ; Gerber, C. E. (University of Illinois at Chicago) ; Gershtein, Y. (Rutgers University) ; Gillberg, D. (York University) ; Ginther, G. (University of Rochester) ; Golovanov, G. (Joint Institute for Nuclear Research) ; Goussiou, A. (University of Washington) ; Grannis, P. D. (State University of New York) ; Greder, S. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Greenlee, H. (Fermi National Accelerator Laboratory) ; Greenwood, Z. D. (Louisiana Tech University) ; Gregores, E. M. (Universidade Federal do ABC (Brasil)) ; Grenier, G. (Université de Lyon) ; Gris, P. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Grivaz, J. F. (LAL. Université Paris-Sud. CNRS/IN2P3) ; Grohsjean, A. (CEA. Irfu. SPP) ; Grünendahl, S. (Fermi National Accelerator Laboratory) ; Grünewald, M. W. (University College Dublin) ; Guo, F. (State University of New York) ; Guo, J. (State University of New York) ; Gutierrez, G. (Fermi National Accelerator Laboratory) ; Gutierrez, P. (University of Oklahoma) ; Haas, Andrew (Columbia University) ; Haefner, P. (Ludwig-Maximilians-Universität München) ; Hagopian, S. (Florida State University) ; Haley, J. (Northeastern University) ; Han, L. (University of Science and Technology of China) ; Harder, K. (The University of Manchester) ; Harel, A. (University of Rochester) ; Hauptman, J. M. (Iowa State University) ; Hays, J. (Imperial College London) ; Hebbeker, T. (III. Physikalisches Institut A. RWTH Aachen University) ; Hedin, D. (Northern Illinois University) ; Heinson, A. P. (University of California Riverside) ; Heintz, U. (Brown University) ; Hensel, C. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Heredia De La Cruz, I (CINVESTAV) ; Herner, K. (University of Michigan) ; Hesketh, G. (Northeastern University) ; Hildreth, M. D. (University of Notre Dame) ; Hirosky, R. (University of Virginia) ; Hoang, T. (Florida State University) ; Hobbs, J. D. (State University of New York) ; Hoeneisen, B. (Universidad San Francisco de Quito) ; Hohlfeld, M. (Institut für Physik. Universität Mainz) ; Hossain, S. (University of Oklahoma) ; Hu, Y. (State University of New York) ; Hubacek, Z. (Czech Technical University in Prague) ; Huske, N. (LPNHE. Universités Paris VI and VII. CNRS/IN2P3) ; Hynek, V. (Czech Technical University in Prague) ; Iashvili, I. (State University of New York) ; Illingworth, R. (Fermi National Accelerator Laboratory) ; Ito, A. S. (Fermi National Accelerator Laboratory) ; Jabeen, S. (Brown University) ; Jaffré, M. (LAL. Université Paris-Sud. CNRS/IN2P3) ; Jain, S. (State University of New York) ; Jamin, D. O (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Jesik, R. (Imperial College London) ; Johns, K. (University of Arizona) ; Johnson, M. (Fermi National Accelerator Laboratory) ; Johnston, D. (University of Nebraska) ; Jonckheere, A. (Fermi National Accelerator Laboratory) ; Jonsson, P. (Imperial College London) ; Joshi, J. (Panjab University) ; Juste Rozas, Aurelio (Fermi National Accelerator Laboratory) ; Kaadze, K. (Kansas State University) ; Kajfasz, E. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Karmanov, D. (Moscow State University) ; Kasper, P. A. (Fermi National Accelerator Laboratory) ; Katsanos, I. (University of Nebraska) ; Kehoe, R. (Southern Methodist University) ; Kermiche, S. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Khalatyan, N. (Fermi National Accelerator Laboratory) ; Khanov, A. (Oklahoma State University) ; Kharchilava, A. (State University of New York) ; Kharzheev, Y. N. (Joint Institute for Nuclear Research) ; Khatidze, D. (Brown University) ; Kirby, M. H. (Northwestern University) ; Kirsch, M. (III. Physikalisches Institut A. RWTH Aachen University) ; Kohli, J. M. (Panjab University) ; Kozelov, A. V. (Institute for High Energy Physics) ; Kraus, J. (Michigan State University) ; Kumar, A. (State University of New York) ; Kupco, A. (Center for Particle Physics. Institute of Physics. Academy of Sciences of the Czech Republic) ; Kurča, T. (Université de Lyon) ; Kuzmin, V. A. (Moscow State University) ; Kvita, J. (Charles University. Faculty of Mathematics and Physics. Center for Particle Physics) ; Lammers, S. (Indiana University) ; Landsberg, G. (Brown University) ; Lebrun, P. (Université de Lyon) ; Lee, H. S. (Korea Detector Laboratory. Korea University) ; Lee, W. M. (Fermi National Accelerator Laboratory) ; Lellouch, J. (LPNHE. Universités Paris VI and VII. CNRS/IN2P3) ; Li, L. (University of California Riverside) ; Li, Q. Z. (Fermi National Accelerator Laboratory) ; Lietti, S. M. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Lim, J. K. (Korea Detector Laboratory. Korea University) ; Lincoln, D. (Fermi National Accelerator Laboratory) ; Linnemann, J. (Michigan State University) ; Lipaev, V. V. (Institute for High Energy Physics) ; Lipton, R. (Fermi National Accelerator Laboratory) ; Liu, Y. (University of Science and Technology of China) ; Liu, Z. (York University) ; Lobodenko, A. (Petersburg Nuclear Physics Institute) ; Lokajicek, M. (Center for Particle Physics. Institute of Physics. Academy of Sciences of the Czech Republic) ; Love, P. (Lancaster University) ; Lubatti, H. J. (University of Washington) ; Luna-Garcia, R. (CINVESTAV) ; Lyon, A. L. (Fermi National Accelerator Laboratory) ; Maciel, A. K. A. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Mackin, D. (Rice University) ; Madar, R. (CEA. Irfu. SPP) ; Magaña-Villalba, R. (CINVESTAV) ; Malik, S. (University of Nebraska) ; Malyshev, V. L. (Joint Institute for Nuclear Research) ; Maravin, Y. (Kansas State University) ; Martínez-Ortega, J. (CINVESTAV) ; McCarthy, R. (State University of New York) ; McGivern, C. L. (University of Kansas) ; Meijer, M. M. (Radboud University Nijmegen/NIKHEF) ; Melnitchouk, A. (University of Mississippi) ; Menezes, D. (Northern Illinois University) ; Mercadante, P. G. (Universidade Federal do ABC (Brasil)) ; Merkin, M. (Moscow State University) ; Meyer, A. (III. Physikalisches Institut A. RWTH Aachen University) ; Meyer, J. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Mondal, N. K. (Tata Institute of Fundamental Research) ; Moulik, T. (University of Kansas) ; Muanza, G. S. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Mulhearn, M. (University of Virginia) ; Nagy, E. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Naimuddin, M. (Delhi University) ; Narain, M. (Brown University) ; Nayyar, R. (Delhi University) ; Neal, H. A. (University of Michigan) ; Negret, J. P. (Universidad de los Andes) ; Neustroev, P. (Petersburg Nuclear Physics Institute) ; Nilsen, H. (Physikalisches Institut. Universität Freiburg) ; Novaes, S. F. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Nunnemann, T. (Ludwig-Maximilians-Universität München) ; Obrant, G. (Petersburg Nuclear Physics Institute) ; Onoprienko, D. (Kansas State University) ; Orduna, J. (CINVESTAV) ; Osman, N. (Imperial College London) ; Osta, J. (University of Notre Dame) ; Otero y Garzón, G. J. (Universidad de Buenos Aires) ; Owen, M. (The University of Manchester) ; Padilla, M. (University of California Riverside) ; Pangilinan, M. (Brown University) ; Parashar, N. (Purdue University Calumet) ; Parihar, V. (Brown University) ; Park, S. K. (Korea Detector Laboratory. Korea University) ; Parsons, J. (Columbia University) ; Partridge, R. (Brown University) ; Parua, N. (Indiana University) ; Patwa, A. (Brookhaven National Laboratory) ; Penning, B. (Fermi National Accelerator Laboratory) ; Perfilov, M. (Moscow State University) ; Peters, K. (The University of Manchester) ; Peters, Y. (The University of Manchester) ; Petrillo, G. (University of Rochester) ; Pétroff, P. (LAL. Université Paris-Sud. CNRS/IN2P3) ; Piegaia, R. (Universidad de Buenos Aires) ; Piper, J. (Michigan State University) ; Pleier, M. A. (Brookhaven National Laboratory) ; Podesta-Lerma, P. L. M. (CINVESTAV) ; Podstavkov, V. M. (Fermi National Accelerator Laboratory) ; Pol, M. E. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Polozov, P. (Institute for Theoretical and Experimental Physics) ; Popov, A. V. (Institute for High Energy Physics) ; Prewitt, M. (Rice University) ; Price, D. (Indiana University) ; Protopopescu, S. (Brookhaven National Laboratory) ; Qian, J. (University of Michigan) ; Quadt, A. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Quinn, B. (University of Mississippi) ; Rangel, M. S. (LAL. Université Paris-Sud. CNRS/IN2P3) ; Ranjan, K. (Delhi University) ; Ratoff, P. N. (Lancaster University) ; Razumov, I. (Institute for High Energy Physics) ; Renkel, P. (Southern Methodist University) ; Rich, P. (The University of Manchester) ; Rijssenbeek, M. (State University of New York) ; Ripp-Baudot, I. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Rizatdinova, F. (Oklahoma State University) ; Rominsky, M. (Fermi National Accelerator Laboratory) ; Royon, C. (CEA. Irfu. SPP) ; Rubinov, P. (Fermi National Accelerator Laboratory) ; Ruchti, R. (University of Notre Dame) ; Safronov, G. (Institute for Theoretical and Experimental Physics) ; Sajot, G. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3. Institut National Polytechnique de Grenoble) ; Sánchez-Hernández, A. (CINVESTAV) ; Sanders, M. P. (Ludwig-Maximilians-Universität München) ; Sanghi, B. (Fermi National Accelerator Laboratory) ; Santos, A. S. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Savage, G. (Fermi National Accelerator Laboratory) ; Sawyer, L. (Louisiana Tech University) ; Scanlon, T. (Imperial College London) ; Schaile, D. (Ludwig-Maximilians-Universität München) ; Schamberger, R. D. (State University of New York) ; Scheglov, Y. (Petersburg Nuclear Physics Institute) ; Schellman, H. (Northwestern University) ; Schliephake, T. (Fachbereich Physik. Bergische Universität Wuppertal) ; Schlobohm, S. (University of Washington) ; Schwanenberger, C. (The University of Manchester) ; Schwienhorst, R. (Michigan State University) ; Sekaric, J. (University of Kansas) ; Severini, H. (University of Oklahoma) ; Shabalina, E. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Shary, V. (CEA. Irfu. SPP) ; Shchukin, A. A. (Institute for High Energy Physics) ; Shivpuri, R. K. (Delhi University) ; Simak, V. (Czech Technical University in Prague) ; Sirotenko, V. (Fermi National Accelerator Laboratory) ; Skubic, P. (University of Oklahoma) ; Slattery, P. (University of Rochester) ; Smirnov, D. (University of Notre Dame) ; Snow, G. R. (University of Nebraska) ; Snow, J. (Langston University) ; Snyder, S. (Brookhaven National Laboratory) ; Söldner-Rembold, S. (The University of Manchester) ; Sonnenschein, L. (III. Physikalisches Institut A. RWTH Aachen University) ; Sopczak, A. (Lancaster University) ; Sosebee, M. (University of Texas) ; Soustruznik, K. (Charles University. Faculty of Mathematics and Physics. Center for Particle Physics) ; Spurlock, B. (University of Texas) ; Stark, J. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3. Institut National Polytechnique de Grenoble) ; Stolin, V. (Institute for Theoretical and Experimental Physics) ; Stoyanova, D. A. (Institute for High Energy Physics) ; Strauss, E. (State University of New York) ; Strauss, M. (University of Oklahoma) ; Ströhmer, R. (Ludwig-Maximilians-Universität München) ; Strom, D. (University of Illinois at Chicago) ; Stutte, L. (Fermi National Accelerator Laboratory) ; Svoisky, P. (Radboud University Nijmegen/NIKHEF) ; Takahashi, M. (The University of Manchester) ; Tanasijczuk, A. (Universidad de Buenos Aires) ; Taylor, W. (York University) ; Tiller, B. (Ludwig-Maximilians-Universität München) ; Titov, M. (CEA. Irfu. SPP) ; Tokmenin, V. V. (Joint Institute for Nuclear Research) ; Tsybychev, D. (State University of New York) ; Tuchming, B. (CEA. Irfu. SPP) ; Tully, C. (Princeton University) ; Tuts, P. M. (Columbia University) ; Unalan, R. (Michigan State University) ; Uvarov, L. (Petersburg Nuclear Physics Institute) ; Uvarov, S. (Petersburg Nuclear Physics Institute) ; Uzunyan, S. (Northern Illinois University) ; Van Kooten, R. (Indiana University) ; van Leeuwen, W. M. (FOM-Institute NIKHEF and University of Amsterdam/NIKHEF) ; Varelas, N. (University of Illinois at Chicago) ; Varnes, E. W. (University of Arizona) ; Vasilyev, I. A. (Institute for High Energy Physics) ; Verdier, P. (Université de Lyon) ; Vertogradov, L. S. (Joint Institute for Nuclear Research) ; Verzocchi, M. (Fermi National Accelerator Laboratory) ; Vesterinen, M. (The University of Manchester) ; Vilanova, D. (CEA. Irfu. SPP) ; Vint, P. (Imperial College London) ; Vokac, P. (Czech Technical University in Prague) ; Wahl, H. D. (Florida State University) ; Wang, M. H. L. S. (University of Rochester) ; Warchol, J. (University of Notre Dame) ; Watts, G. (University of Washington) ; Wayne, M. (University of Notre Dame) ; Weber, G. (Institut für Physik. Universität Mainz) ; Weber, M. (Fermi National Accelerator Laboratory) ; Wetstein, M. (University of Maryland) ; White, A. (University of Texas) ; Wicke, D. (Institut für Physik. Universität Mainz) ; Williams, M. R. J. (Lancaster University) ; Wilson, G. W. (University of Kansas) ; Wimpenny, S. J. (University of California Riverside) ; Wobisch, M. (Louisiana Tech University) ; Wood, D. R. (Northeastern University) ; Wyatt, T. R. (The University of Manchester) ; Xie, Y. (Fermi National Accelerator Laboratory) ; Xu, C. (University of Michigan) ; Yacoob, S. (Northwestern University) ; Yamada, R. (Fermi National Accelerator Laboratory) ; Yang, W. C. (The University of Manchester) ; Yasuda, T. (Fermi National Accelerator Laboratory) ; Yatsunenko, Y. A. (Joint Institute for Nuclear Research) ; Ye, Z. (Fermi National Accelerator Laboratory) ; Yin, H. (University of Science and Technology of China) ; Yip, K. (Brookhaven National Laboratory) ; Yoo, H. D. (Brown University) ; Youn, S. W. (Fermi National Accelerator Laboratory) ; Yu, J. (University of Texas) ; Zelitch, S. (University of Virginia) ; Zhao, T. (University of Washington) ; Zhou, B. (University of Michigan) ; Zhu, J. (State University of New York) ; Zielinski, M. (University of Rochester) ; Zieminska, D. (Indiana University) ; Živković, Lada (Columbia University)
We present the results of a search for the flavor changing neutral current decay B →μμ using 6. 1 fb of pp collisions at s=1. 96 TeV collected by the D0 experiment at the Fermilab Tevatron Collider. [...]
2010 - 10.1016/j.physletb.2010.09.024
Physics letters. B, Vol. 693, issue 5 (Oct. 2010) , p. 539-544  
9.
10 p, 575.2 KB Measurement of direct photon pair production cross sections in p over(p, ̄) collisions at sqrt(s) = 1.96 TeV / Abazov, V. M. (Joint Institute for Nuclear Research) ; Abbott, B. (University of Oklahoma) ; Abolins, M. (Michigan State University) ; Acharya, B. S. (Tata Institute of Fundamental Research) ; Adams, Maurice Lawrence (University of Illinois at Chicago) ; Adams, Todd (Florida State University) ; Aguilo, E. (Simon Fraser University) ; Alexeev, G. D. (Joint Institute for Nuclear Research) ; Alkhazov, G. (Petersburg Nuclear Physics Institute) ; Alton, A. (University of Michigan) ; Alverson, G. (Northeastern University) ; Alves, Gelio (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Ancu, L. S. (Radboud University Nijmegen. NIKHEF) ; Aoki, M. (Fermi National Accelerator Laboratory) ; Arnoud, Y. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3) ; Arov, M. (Louisiana Tech University) ; Askew, A. (Florida State University) ; Åsman, B. (Stockholm University. Stockholm. Sweden. Uppsala University) ; Atramentov, O. (Rutgers University) ; Ávila, Carlos (Universidad de los Andes) ; BackusMayes, J. (University of Washington) ; Badaud, F. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Bagby, L. (Fermi National Accelerator Laboratory) ; Baldin, B. (Fermi National Accelerator Laboratory) ; Bandurin, D. V. (Florida State University) ; Banerjee, Sw (Tata Institute of Fundamental Research) ; Barberis, E. (Northeastern University) ; Barfuss, A. F. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Baringer, P. (University of Kansas) ; Barreto, J. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Bartlett, J. F. (Fermi National Accelerator Laboratory) ; Bassler, U. (CEA. Irfu. SPP) ; Beale, S. (Simon Fraser University) ; Bean, A. (University of Kansas) ; Begalli, M. (Universidade do Estado do Rio de Janeiro) ; Begel, M. (Brookhaven National Laboratory) ; Belanger-Champagne, C. (Stockholm University. Stockholm. Sweden. Uppsala University) ; Bellantoni, L. (Fermi National Accelerator Laboratory) ; Benitez, J. A. (Michigan State University) ; Beri, S. B. (Panjab University) ; Bernardi, G. (LPNHE. Universités Paris VI. VII) ; Bernhard, R. (Physikalisches Institut. Universität Freiburg) ; Bertram, I. (Lancaster University) ; Besançon, M. (CEA. Irfu. SPP) ; Beuselinck, R. (Imperial College London) ; Bezzubov, V. A. (Institute for High Energy Physics) ; Bhat, P. C. (Fermi National Accelerator Laboratory) ; Bhatnagar, V. (Panjab University) ; Blazey, G. (Northern Illinois University) ; Blessing, S. (Florida State University) ; Bloom, K. (University of Nebraska) ; Boehnlein, A. (Fermi National Accelerator Laboratory) ; Boline, D. (Boston University) ; Bolton, T. A. (Kansas State University) ; Boos, E. E. (Moscow State University) ; Borissov, G. (Lancaster University) ; Bose, T. (Boston University) ; Brandt, A. (University of Texas) ; Brock, R. (Michigan State University) ; Brooijmans, G. (Columbia University) ; Bross, A. (Fermi National Accelerator Laboratory) ; Brown, D. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Bu, X. B. (University of Science and Technology of China) ; Buchholz, D. (Northwestern University) ; Buehler, M. (University of Virginia) ; Buescher, V. (Institut für Physik. Universität Mainz) ; Bunichev, V. (Moscow State University) ; Burdin, S. (Lancaster University) ; Burnett, T. H. (University of Washington) ; Buszello, C. P. (Imperial College London) ; Calfayan, P. (Ludwig-Maximilians-Universität München) ; Calpas, B. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Calvet, S. (LAL. Université Paris-Sud. IN2P3/CNRS) ; Camacho-Pérez, E. (CINVESTAV) ; Cammin, J. (University of Rochester) ; Carrasco-Lizarraga, M. A. (CINVESTAV) ; Carrera, E. (Florida State University) ; Casey, B. C. K. (Fermi National Accelerator Laboratory) ; Castilla-Valdez, H. (CINVESTAV) ; Chakrabarti, S. (State University of New York) ; Chakraborty, D. (Northern Illinois University) ; Chan, K. M. (University of Notre Dame) ; Chandra, A. (Rice University) ; Chen, G. (University of Kansas) ; Chevalier-Théry, S. (CEA. Irfu. SPP) ; Cho, D. K. (Brown University) ; Cho, S. W. (Korea Detector Laboratory. Korea University) ; Choi, S. (SungKyunKwan University) ; Choudhary, B. (Delhi University) ; Christoudias, T. (Imperial College London) ; Cihangir, S. (Fermi National Accelerator Laboratory) ; Claes, D. (University of Nebraska) ; Clutter, J. (University of Kansas) ; Cooke, M. (Fermi National Accelerator Laboratory) ; Cooper, W. E. (Fermi National Accelerator Laboratory) ; Corcoran, M. (Rice University) ; Couderc, F. (CEA. Irfu. SPP) ; Cousinou, M. C. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Cutts, D. (Brown University) ; Ćwiok, M. (University College Dublin) ; Das, A. (University of Arizona) ; Davies, G. (Imperial College London) ; De, K. (University of Texas) ; de Jong, S. J. (Radboud University Nijmegen. NIKHEF) ; De La Cruz-Burelo, E. (CINVESTAV) ; DeVaughan, K. (University of Nebraska) ; Déliot, F. (CEA. Irfu. SPP) ; Demarteau, M. (Fermi National Accelerator Laboratory) ; Demina, R. (University of Rochester) ; Denisov, D. (Fermi National Accelerator Laboratory) ; Denisov, S. P. (Institute for High Energy Physics) ; Desai, S. (Fermi National Accelerator Laboratory) ; Diehl, H. T. (Fermi National Accelerator Laboratory) ; Diesburg, M. (Fermi National Accelerator Laboratory) ; Dominguez, Aaron (University of Nebraska) ; Dorland, T. (University of Washington) ; Dubey, A. (Delhi University) ; Dudko, L. V. (Moscow State University) ; Duflot, L. (LAL. Université Paris-Sud. IN2P3/CNRS) ; Duggan, D. (Rutgers University) ; Duperrin, A. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Dutt, S. (Panjab University) ; Dyshkant, A. (Northern Illinois University) ; Eads, M. (University of Nebraska) ; Edmunds, D. (Michigan State University) ; Ellison, J. (University of California Riverside) ; Elvira, V. D. (Fermi National Accelerator Laboratory) ; Enari, Y. (LPNHE. Universités Paris VI. VII) ; Eno, S. (University of Maryland) ; Evans, H. (Indiana University) ; Evdokimov, A. (Brookhaven National Laboratory) ; Evdokimov, V. N. (Institute for High Energy Physics) ; Facini, G. (Northeastern University) ; Ferapontov, A. V. (Brown University) ; Ferbel, T. (University of Rochester) ; Fiedler, F. (Institut für Physik. Universität Mainz) ; Filthaut, F. (Radboud University Nijmegen. NIKHEF) ; Fisher, W. (Michigan State University) ; Fisk, H. E. (Fermi National Accelerator Laboratory) ; Fortner, M. (Northern Illinois University) ; Fox, H. (Lancaster University) ; Fuess, S. (Fermi National Accelerator Laboratory) ; Gadfort, T. (Brookhaven National Laboratory) ; Garcia-Bellido, A. (University of Rochester) ; Gavrilov, V. (Institute for Theoretical and Experimental Physics) ; Gay, P. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Geist, W. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Geng, W. (Michigan State University) ; Gerbaudo, D. (Princeton University) ; Gerber, C. E. (University of Illinois at Chicago) ; Gershtein, Y. (Rutgers University) ; Gillberg, D. (Simon Fraser University) ; Ginther, G. (University of Rochester) ; Golovanov, G. (Joint Institute for Nuclear Research) ; Gómez, B. (Universidad de los Andes) ; Goussiou, A. (University of Washington) ; Grannis, P. D. (State University of New York) ; Greder, S. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Greenlee, H. (Fermi National Accelerator Laboratory) ; Greenwood, Z. D. (Louisiana Tech University) ; Gregores, E. M. (Universidade Federal. ABC) ; Grenier, G. (IPNL. Université Lyon 1. CNRS/IN2P3. Villeurbanne) ; Gris, P. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Grivaz, J. F. (LAL. Université Paris-Sud. IN2P3/CNRS) ; Grohsjean, A. (CEA. Irfu. SPP) ; Grünendahl, S. (Fermi National Accelerator Laboratory) ; Grünewald, M. W. (University College Dublin) ; Guo, F. (State University of New York) ; Guo, J. (State University of New York) ; Gutierrez, G. (Fermi National Accelerator Laboratory) ; Gutierrez, P. (University of Oklahoma) ; Haas, Andrew (Columbia University) ; Haefner, P. (Ludwig-Maximilians-Universität München) ; Hagopian, S. (Florida State University) ; Haley, J. (Northeastern University) ; Hall, I. (Michigan State University) ; Han, L. (University of Science and Technology of China) ; Harder, K. (The University of Manchester) ; Harel, A. (University of Rochester) ; Hauptman, J. M. (Iowa State University) ; Hays, J. (Imperial College London) ; Hebbeker, T. (III. Physikalisches Institut A. RWTH Aachen University) ; Hedin, D. (Northern Illinois University) ; Heinson, A. P. (University of California Riverside) ; Heintz, U. (Brown University) ; Hensel, C. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Heredia De La Cruz, I (CINVESTAV) ; Herner, K. (University of Michigan) ; Hesketh, G. (Northeastern University) ; Hildreth, M. D. (University of Notre Dame) ; Hirosky, R. (University of Virginia) ; Hoang, T. (Florida State University) ; Hobbs, J. D. (State University of New York) ; Hoeneisen, B. (Universidad San Francisco de Quito) ; Hohlfeld, M. (Institut für Physik. Universität Mainz) ; Hossain, S. (University of Oklahoma) ; Houben, P. (FOM-Institute NIKHEF. University of Amsterdam. NIKHEF) ; Hu, Y. (State University of New York) ; Hubacek, Z. (Czech Technical University in Prague) ; Huske, N. (LPNHE. Universités Paris VI. VII) ; Hynek, V. (Czech Technical University in Prague) ; Iashvili, I. (State University of New York) ; Illingworth, R. (Fermi National Accelerator Laboratory) ; Ito, A. S. (Fermi National Accelerator Laboratory) ; Jabeen, S. (Brown University) ; Jaffré, M. (LAL. Université Paris-Sud. IN2P3/CNRS) ; Jain, S. (State University of New York) ; Jamin, D. O (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Jesik, R. (Imperial College London) ; Johns, K. (University of Arizona) ; Johnson, C. (Columbia University) ; Johnson, M. (Fermi National Accelerator Laboratory) ; Johnston, D. (University of Nebraska) ; Jonckheere, A. (Fermi National Accelerator Laboratory) ; Jonsson, P. (Imperial College London) ; Juste Rozas, Aurelio (Fermi National Accelerator Laboratory) ; Kajfasz, E. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Karmanov, D. (Moscow State University) ; Kasper, P. A. (Fermi National Accelerator Laboratory) ; Katsanos, I. (University of Nebraska) ; Kehoe, R. (Southern Methodist University) ; Kermiche, S. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Khalatyan, N. (Fermi National Accelerator Laboratory) ; Khanov, A. (Oklahoma State University) ; Kharchilava, A. (State University of New York) ; Kharzheev, Y. N. (Joint Institute for Nuclear Research) ; Khatidze, D. (Brown University) ; Kirby, M. H. (Northwestern University) ; Kirsch, M. (III. Physikalisches Institut A. RWTH Aachen University) ; Kohli, J. M. (Panjab University) ; Kozelov, A. V. (Institute for High Energy Physics) ; Kraus, J. (Michigan State University) ; Kumar, A. (State University of New York) ; Kupco, A. (Center for Particle Physics. Institute of Physics. Academy of Sciences of the Czech Republic) ; Kurča, T. (IPNL. Université Lyon 1. CNRS/IN2P3. Villeurbanne) ; Kuzmin, V. A. (Moscow State University) ; Kvita, J. (Center for Particle Physics. Charles University. Faculty of Mathematics and Physics) ; Lammers, S. (Indiana University) ; Landsberg, G. (Brown University) ; Lebrun, P. (IPNL. Université Lyon 1. CNRS/IN2P3. Villeurbanne) ; Lee, H. S. (Korea Detector Laboratory. Korea University) ; Lee, W. M. (Fermi National Accelerator Laboratory) ; Lellouch, J. (LPNHE. Universités Paris VI. VII) ; Li, L. (University of California Riverside) ; Li, Q. Z. (Fermi National Accelerator Laboratory) ; Lietti, S. M. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Lim, J. K. (Korea Detector Laboratory. Korea University) ; Lincoln, D. (Fermi National Accelerator Laboratory) ; Linnemann, J. (Michigan State University) ; Lipaev, V. V. (Institute for High Energy Physics) ; Lipton, R. (Fermi National Accelerator Laboratory) ; Liu, Y. (University of Science and Technology of China) ; Liu, Z. (Simon Fraser University) ; Lobodenko, A. (Petersburg Nuclear Physics Institute) ; Lokajicek, M. (Center for Particle Physics. Institute of Physics. Academy of Sciences of the Czech Republic) ; Love, P. (Lancaster University) ; Lubatti, H. J. (University of Washington) ; Luna-Garcia, R. (CINVESTAV) ; Lyon, A. L. (Fermi National Accelerator Laboratory) ; Maciel, A. K. A. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Mackin, D. (Rice University) ; Magaña-Villalba, R. (CINVESTAV) ; Mal, P. K. (University of Arizona) ; Malik, S. (University of Nebraska) ; Malyshev, V. L. (Joint Institute for Nuclear Research) ; Maravin, Y. (Kansas State University) ; Martínez-Ortega, J. (CINVESTAV) ; McCarthy, R. (State University of New York) ; McGivern, C. L. (University of Kansas) ; Meijer, M. M. (Radboud University Nijmegen. NIKHEF) ; Melnitchouk, A. (University of Mississippi) ; Mendoza, L. (Universidad de los Andes) ; Menezes, D. (Northern Illinois University) ; Mercadante, P. G. (Universidade Federal. ABC) ; Merkin, M. (Moscow State University) ; Meyer, A. (III. Physikalisches Institut A. RWTH Aachen University) ; Meyer, J. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Mondal, N. K. (Tata Institute of Fundamental Research) ; Moulik, T. (University of Kansas) ; Muanza, G. S. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Mulhearn, M. (University of Virginia) ; Nagy, E. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Naimuddin, M. (Delhi University) ; Narain, M. (Brown University) ; Nayyar, R. (Delhi University) ; Neal, H. A. (University of Michigan) ; Negret, J. P. (Universidad de los Andes) ; Neustroev, P. (Petersburg Nuclear Physics Institute) ; Nilsen, H. (Physikalisches Institut. Universität Freiburg) ; Novaes, S. F. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Nunnemann, T. (Ludwig-Maximilians-Universität München) ; Obrant, G. (Petersburg Nuclear Physics Institute) ; Onoprienko, D. (Kansas State University) ; Orduna, J. (CINVESTAV) ; Osman, N. (Imperial College London) ; Osta, J. (University of Notre Dame) ; Otero y Garzón, G. J. (Universidad de Buenos Aires) ; Owen, M. (The University of Manchester) ; Padilla, M. (University of California Riverside) ; Pangilinan, M. (Brown University) ; Parashar, N. (Purdue University Calumet) ; Parihar, V. (Brown University) ; Park, S. J. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Park, S. K. (Korea Detector Laboratory. Korea University) ; Parsons, J. (Columbia University) ; Partridge, R. (Brown University) ; Parua, N. (Indiana University) ; Patwa, A. (Brookhaven National Laboratory) ; Penning, B. (Fermi National Accelerator Laboratory) ; Perfilov, M. (Moscow State University) ; Peters, K. (The University of Manchester) ; Peters, Y. (The University of Manchester) ; Pétroff, P. (LAL. Université Paris-Sud. IN2P3/CNRS) ; Piegaia, R. (Universidad de Buenos Aires) ; Piper, J. (Michigan State University) ; Pleier, M. A. (Brookhaven National Laboratory) ; Podesta-Lerma, P. L. M. (CINVESTAV) ; Podstavkov, V. M. (Fermi National Accelerator Laboratory) ; Pol, M. E. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Polozov, P. (Institute for Theoretical and Experimental Physics) ; Popov, A. V. (Institute for High Energy Physics) ; Prewitt, M. (Rice University) ; Price, D. (Indiana University) ; Protopopescu, S. (Brookhaven National Laboratory) ; Qian, J. (University of Michigan) ; Quadt, A. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Quinn, B. (University of Mississippi) ; Rangel, M. S. (LAL. Université Paris-Sud. IN2P3/CNRS) ; Ranjan, K. (Delhi University) ; Ratoff, P. N. (Lancaster University) ; Razumov, I. (Institute for High Energy Physics) ; Renkel, P. (Southern Methodist University) ; Rich, P. (The University of Manchester) ; Rijssenbeek, M. (State University of New York) ; Ripp-Baudot, I. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Rizatdinova, F. (Oklahoma State University) ; Rominsky, M. (Fermi National Accelerator Laboratory) ; Royon, C. (CEA. Irfu. SPP) ; Rubinov, P. (Fermi National Accelerator Laboratory) ; Ruchti, R. (University of Notre Dame) ; Safronov, G. (Institute for Theoretical and Experimental Physics) ; Sajot, G. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3) ; Sánchez-Hernández, A. (CINVESTAV) ; Sanders, M. P. (Ludwig-Maximilians-Universität München) ; Sanghi, B. (Fermi National Accelerator Laboratory) ; Savage, G. (Fermi National Accelerator Laboratory) ; Sawyer, L. (Louisiana Tech University) ; Scanlon, T. (Imperial College London) ; Schaile, D. (Ludwig-Maximilians-Universität München) ; Schamberger, R. D. (State University of New York) ; Scheglov, Y. (Petersburg Nuclear Physics Institute) ; Schellman, H. (Northwestern University) ; Schliephake, T. (Fachbereich Physik. University of Wuppertal) ; Schlobohm, S. (University of Washington) ; Schwanenberger, C. (The University of Manchester) ; Schwienhorst, R. (Michigan State University) ; Sekaric, J. (University of Kansas) ; Severini, H. (University of Oklahoma) ; Shabalina, E. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Shary, V. (CEA. Irfu. SPP) ; Shchukin, A. A. (Institute for High Energy Physics) ; Shivpuri, R. K. (Delhi University) ; Simak, V. (Czech Technical University in Prague) ; Sirotenko, V. (Fermi National Accelerator Laboratory) ; Skubic, P. (University of Oklahoma) ; Slattery, P. (University of Rochester) ; Smirnov, D. (University of Notre Dame) ; Snow, G. R. (University of Nebraska) ; Snow, J. (Langston University) ; Snyder, S. (Brookhaven National Laboratory) ; Söldner-Rembold, S. (The University of Manchester) ; Sonnenschein, L. (III. Physikalisches Institut A. RWTH Aachen University) ; Sopczak, A. (Lancaster University) ; Sosebee, M. (University of Texas) ; Soustruznik, K. (Center for Particle Physics. Charles University. Faculty of Mathematics and Physics) ; Spurlock, B. (University of Texas) ; Stark, J. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3) ; Stolin, V. (Institute for Theoretical and Experimental Physics) ; Stoyanova, D. A. (Institute for High Energy Physics) ; Strang, M. A. (State University of New York) ; Strauss, E. (State University of New York) ; Strauss, M. (University of Oklahoma) ; Ströhmer, R. (Ludwig-Maximilians-Universität München) ; Strom, D. (University of Illinois at Chicago) ; Stutte, L. (Fermi National Accelerator Laboratory) ; Svoisky, P. (Radboud University Nijmegen. NIKHEF) ; Takahashi, M. (The University of Manchester) ; Tanasijczuk, A. (Universidad de Buenos Aires) ; Taylor, W. (Simon Fraser University) ; Tiller, B. (Ludwig-Maximilians-Universität München) ; Titov, M. (CEA. Irfu. SPP) ; Tokmenin, V. V. (Joint Institute for Nuclear Research) ; Tsybychev, D. (State University of New York) ; Tuchming, B. (CEA. Irfu. SPP) ; Tully, C. (Princeton University) ; Tuts, P. M. (Columbia University) ; Unalan, R. (Michigan State University) ; Uvarov, L. (Petersburg Nuclear Physics Institute) ; Uvarov, S. (Petersburg Nuclear Physics Institute) ; Uzunyan, S. (Northern Illinois University) ; van Kooten, R. (Indiana University) ; van Leeuwen, W. M. (FOM-Institute NIKHEF. University of Amsterdam. NIKHEF) ; Varelas, N. (University of Illinois at Chicago) ; Varnes, E. W. (University of Arizona) ; Vasilyev, I. A. (Institute for High Energy Physics) ; Verdier, P. (IPNL. Université Lyon 1. CNRS/IN2P3. Villeurbanne) ; Vertogradov, L. S. (Joint Institute for Nuclear Research) ; Verzocchi, M. (Fermi National Accelerator Laboratory) ; Vesterinen, M. (The University of Manchester) ; Vilanova, D. (CEA. Irfu. SPP) ; Vint, P. (Imperial College London) ; Vokac, P. (Czech Technical University in Prague) ; Wahl, H. D. (Florida State University) ; Wang, M. H. L. S. (University of Rochester) ; Warchol, J. (University of Notre Dame) ; Watts, G. (University of Washington) ; Wayne, M. (University of Notre Dame) ; Weber, G. (Institut für Physik. Universität Mainz) ; Weber, M. (Fermi National Accelerator Laboratory) ; Wetstein, M. (University of Maryland) ; White, A. (University of Texas) ; Wicke, D. (Institut für Physik. Universität Mainz) ; Williams, M. R. J. (Lancaster University) ; Wilson, G. W. (University of Kansas) ; Wimpenny, S. J. (University of California Riverside) ; Wobisch, M. (Louisiana Tech University) ; Wood, D. R. (Northeastern University) ; Wyatt, T. R. (The University of Manchester) ; Xie, Y. (Fermi National Accelerator Laboratory) ; Xu, C. (University of Michigan) ; Yacoob, S. (Northwestern University) ; Yamada, R. (Fermi National Accelerator Laboratory) ; Yang, W. C. (The University of Manchester) ; Yasuda, T. (Fermi National Accelerator Laboratory) ; Yatsunenko, Y. A. (Joint Institute for Nuclear Research) ; Ye, Z. (Fermi National Accelerator Laboratory) ; Yin, H. (University of Science and Technology of China) ; Yip, K. (Brookhaven National Laboratory) ; Yoo, H. D. (Brown University) ; Youn, S. W. (Fermi National Accelerator Laboratory) ; Yu, J. (University of Texas) ; Zelitch, S. (University of Virginia) ; Zhao, T. (University of Washington) ; Zhou, B. (University of Michigan) ; Zhu, J. (State University of New York) ; Zielinski, M. (University of Rochester) ; Zieminska, D. (Indiana University) ; Živković, Lada (Columbia University)
We present a measurement of direct photon pair production cross sections using 4. 2 fb of data collected with the D0 detector at the Fermilab Tevatron p over(p, ̄) Collider. We measure single differential cross sections as a function of the diphoton mass, the transverse momentum of the diphoton system, the azimuthal angle between the photons, and the polar scattering angle of the photons. [...]
2010 - 10.1016/j.physletb.2010.05.017
Physics letters. B, Vol. 690, issue 2 (June 2010) , p. 108-117  
10.
7 p, 380.1 KB Dependence of the tt production cross section on the transverse momentum of the top quark / Abazov, V. M. (Joint Institute for Nuclear Research) ; Abbott, B. (University of Oklahoma) ; Abolins, M. (Michigan State University) ; Acharya, B. S. (Tata Institute of Fundamental Research) ; Adams, Maurice Lawrence (University of Illinois at Chicago) ; Adams, Todd (Florida State University) ; Aguilo, E. (York University) ; Alexeev, G. D. (Joint Institute for Nuclear Research) ; Alkhazov, G. (Petersburg Nuclear Physics Institute) ; Alton, A. (Michigan State University) ; Alverson, G. (Northeastern University) ; Alves, Gelio (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Ancu, L. S. (Radboud University Nijmegen/NIKHEF) ; Aoki, M. (Fermi National Accelerator Laboratory) ; Arnoud, Y. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3. Institut National Polytechnique de Grenoble) ; Arov, M. (Louisiana Tech University) ; Askew, A. (Florida State University) ; Åsman, B. (Uppsala University) ; Atramentov, O. (Rutgers University) ; Ávila, Carlos (Universidad de los Andes) ; BackusMayes, J. (University of Washington) ; Badaud, F. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Bagby, L. (Fermi National Accelerator Laboratory) ; Baldin, B. (Fermi National Accelerator Laboratory) ; Bandurin, D. V. (Kansas State University) ; Banerjee, Sw (Tata Institute of Fundamental Research) ; Barberis, E. (Northeastern University) ; Barfuss, A. F. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Baringer, P. (University of Kansas) ; Barreto, J. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Bartlett, J. F. (Fermi National Accelerator Laboratory) ; Bassler, U. (CEA. Irfu. SPP) ; Bauer, D. (Imperial College London) ; Beale, S. (York University) ; Bean, A. (University of Kansas) ; Begalli, M. (Universidade do Estado do Rio de Janeiro) ; Begel, M. (Brookhaven National Laboratory) ; Belanger-Champagne, C. (Uppsala University) ; Bellantoni, L. (Fermi National Accelerator Laboratory) ; Benitez, J. A. (Michigan State University) ; Beri, S. B. (Panjab University) ; Bernardi, G. (LPNHE. IN2P3/CNRS. Universités Paris VI and VII) ; Bernhard, R. (Physikalisches Institut. Universität Freiburg) ; Bertram, I. (Lancaster University) ; Besançon, M. (CEA. Irfu. SPP) ; Beuselinck, R. (Imperial College London) ; Bezzubov, V. A. (Institute for High Energy Physics) ; Bhat, P. C. (Fermi National Accelerator Laboratory) ; Bhatnagar, V. (Panjab University) ; Blazey, G. (Northern Illinois University) ; Blessing, S. (Florida State University) ; Bloom, K. (University of Nebraska) ; Boehnlein, A. (Fermi National Accelerator Laboratory) ; Boline, D. (Boston University) ; Bolton, T. A. (Kansas State University) ; Boos, E. E. (Moscow State University) ; Borissov, G. (Lancaster University) ; Bose, T. (Boston University) ; Brandt, A. (University of Texas) ; Brock, R. (Michigan State University) ; Brooijmans, G. (Columbia University) ; Bross, A. (Fermi National Accelerator Laboratory) ; Brown, D. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Bu, X. B. (University of Science and Technology of China) ; Buchholz, D. (Northwestern University) ; Buehler, M. (University of Virginia) ; Buescher, V. (Institut für Physik. Universität Mainz) ; Bunichev, V. (Moscow State University) ; Burdin, S. (Lancaster University) ; Burnett, T. H. (University of Washington) ; Buszello, C. P. (Imperial College London) ; Calfayan, P. (Ludwig-Maximilians-Universität München) ; Calpas, B. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Calvet, S. (LAL. IN2P3/CNRS. Université Paris-Sud) ; Camacho-Pérez, E. (CINVESTAV) ; Cammin, J. (University of Rochester) ; Carrasco-Lizarraga, M. A. (CINVESTAV) ; Carrera, E. (Florida State University) ; Casey, B. C. K. (Fermi National Accelerator Laboratory) ; Castilla-Valdez, H. (CINVESTAV) ; Chakrabarti, S. (State University of New York) ; Chakraborty, D. (Northern Illinois University) ; Chan, K. M. (University of Notre Dame) ; Chandra, A. (Indiana University) ; Cheu, E. (University of Arizona) ; Chevalier-Théry, S. (CEA. Irfu. SPP) ; Cho, D. K. (Boston University) ; Cho, S. W. (Korea Detector Laboratory. Korea University) ; Choi, S. (SungKyunKwan University) ; Choudhary, B. (Delhi University) ; Christoudias, T. (Imperial College London) ; Cihangir, S. (Fermi National Accelerator Laboratory) ; Claes, D. (University of Nebraska) ; Clutter, J. (University of Kansas) ; Cooke, M. (Fermi National Accelerator Laboratory) ; Cooper, W. E. (Fermi National Accelerator Laboratory) ; Corcoran, M. (Rice University) ; Couderc, F. (CEA. Irfu. SPP) ; Cousinou, M. C. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Cutts, D. (Brown University) ; Ćwiok, M. (University College Dublin) ; Das, A. (University of Arizona) ; Davies, G. (Imperial College London) ; De, K. (University of Texas) ; de Jong, S. J. (Radboud University Nijmegen/NIKHEF) ; De La Cruz-Burelo, E. (CINVESTAV) ; DeVaughan, K. (University of Nebraska) ; Déliot, F. (CEA. Irfu. SPP) ; Demarteau, M. (Fermi National Accelerator Laboratory) ; Demina, R. (University of Rochester) ; Denisov, D. (Fermi National Accelerator Laboratory) ; Denisov, S. P. (Institute for High Energy Physics) ; Desai, S. (Fermi National Accelerator Laboratory) ; Diehl, H. T. (Fermi National Accelerator Laboratory) ; Diesburg, M. (Fermi National Accelerator Laboratory) ; Dominguez, Aaron (University of Nebraska) ; Dorland, T. (University of Washington) ; Dubey, A. (Delhi University) ; Dudko, L. V. (Moscow State University) ; Duflot, L. (LAL. IN2P3/CNRS. Université Paris-Sud) ; Duggan, D. (Rutgers University) ; Duperrin, A. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Dutt, S. (Panjab University) ; Dyshkant, A. (Northern Illinois University) ; Eads, M. (University of Nebraska) ; Edmunds, D. (Michigan State University) ; Ellison, J. (University of California) ; Elvira, V. D. (Fermi National Accelerator Laboratory) ; Enari, Y. (LPNHE. IN2P3/CNRS. Universités Paris VI and VII) ; Eno, S. (University of Maryland) ; Evans, H. (Indiana University) ; Evdokimov, A. (Brookhaven National Laboratory) ; Evdokimov, V. N. (Institute for High Energy Physics) ; Facini, G. (Northeastern University) ; Ferapontov, A. V. (Brown University) ; Ferbel, T. (University of Rochester) ; Fiedler, F. (Institut für Physik. Universität Mainz) ; Filthaut, F. (Radboud University Nijmegen/NIKHEF) ; Fisher, W. (Michigan State University) ; Fisk, H. E. (Fermi National Accelerator Laboratory) ; Fortner, M. (Northern Illinois University) ; Fox, H. (Lancaster University) ; Fuess, S. (Fermi National Accelerator Laboratory) ; Gadfort, T. (Brookhaven National Laboratory) ; Galea, C. F. (Radboud University Nijmegen/NIKHEF) ; Garcia-Bellido, A. (University of Rochester) ; Gavrilov, V. (Institute for Theoretical and Experimental Physics) ; Gay, P. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Geist, W. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Geng, W. (Michigan State University) ; Gerbaudo, D. (Princeton University) ; Gerber, C. E. (University of Illinois at Chicago) ; Gershtein, Y. (Rutgers University) ; Gillberg, D. (York University) ; Ginther, G. (University of Rochester) ; Golovanov, G. (Joint Institute for Nuclear Research) ; Gómez, B. (Universidad de los Andes) ; Goussiou, A. (University of Washington) ; Grannis, P. D. (State University of New York) ; Greder, S. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Greenlee, H. (Fermi National Accelerator Laboratory) ; Greenwood, Z. D. (Louisiana Tech University) ; Gregores, E. M. (Universidade Federal do ABC (Brasil)) ; Grenier, G. (Université de Lyon) ; Gris, P. (LPC. Université Blaise Pascal. CNRS/IN2P3) ; Grivaz, J. F. (LAL. IN2P3/CNRS. Université Paris-Sud) ; Grohsjean, A. (CEA. Irfu. SPP) ; Grünendahl, S. (Fermi National Accelerator Laboratory) ; Grünewald, M. W. (University College Dublin) ; Guo, F. (State University of New York) ; Guo, J. (State University of New York) ; Gutierrez, G. (Fermi National Accelerator Laboratory) ; Gutierrez, P. (University of Oklahoma) ; Haas, Andrew (Columbia University) ; Haefner, P. (Ludwig-Maximilians-Universität München) ; Hagopian, S. (Florida State University) ; Haley, J. (Northeastern University) ; Hall, I. (Michigan State University) ; Han, L. (University of Science and Technology of China) ; Harder, K. (The University of Manchester) ; Harel, A. (University of Rochester) ; Hauptman, J. M. (Iowa State University) ; Hays, J. (Imperial College London) ; Hebbeker, T. (III. Physikalisches Institut A. RWTH Aachen University) ; Hedin, D. (Northern Illinois University) ; Hegeman, J. G. (FOM-Institute NIKHEF. University of Amsterdam/NIKHEF) ; Heinson, A. P. (University of California) ; Heintz, U. (Brown University) ; Hensel, C. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Heredia De La Cruz, I (CINVESTAV) ; Herner, K. (University of Michigan) ; Hesketh, G. (Northeastern University) ; Hildreth, M. D. (University of Notre Dame) ; Hirosky, R. (University of Virginia) ; Hoang, T. (Florida State University) ; Hobbs, J. D. (State University of New York) ; Hoeneisen, B. (Universidad San Francisco de Quito) ; Hohlfeld, M. (Institut für Physik. Universität Mainz) ; Hossain, S. (University of Oklahoma) ; Houben, P. (FOM-Institute NIKHEF. University of Amsterdam/NIKHEF) ; Hu, Y. (State University of New York) ; Hubacek, Z. (Czech Technical University in Prague) ; Huske, N. (LPNHE. IN2P3/CNRS. Universités Paris VI and VII) ; Hynek, V. (Czech Technical University in Prague) ; Iashvili, I. (State University of New York) ; Illingworth, R. (Fermi National Accelerator Laboratory) ; Ito, A. S. (Fermi National Accelerator Laboratory) ; Jabeen, S. (Boston University) ; Jaffré, M. (LAL. IN2P3/CNRS. Université Paris-Sud) ; Jain, S. (State University of New York) ; Jamin, D. O (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Jesik, R. (Imperial College London) ; Johns, K. (University of Arizona) ; Johnson, C. (Columbia University) ; Johnson, M. (Fermi National Accelerator Laboratory) ; Johnston, D. (University of Nebraska) ; Jonckheere, A. (Fermi National Accelerator Laboratory) ; Jonsson, P. (Imperial College London) ; Juste Rozas, Aurelio (Fermi National Accelerator Laboratory) ; Kajfasz, E. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Karmanov, D. (Moscow State University) ; Kasper, P. A. (Fermi National Accelerator Laboratory) ; Katsanos, I. (University of Nebraska) ; Kaushik, V. (University of Texas) ; Kehoe, R. (Southern Methodist University) ; Kermiche, S. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Khalatyan, N. (Fermi National Accelerator Laboratory) ; Khanov, A. (Oklahoma State University) ; Kharchilava, A. (State University of New York) ; Kharzheev, Y. N. (Joint Institute for Nuclear Research) ; Khatidze, D. (Brown University) ; Kirby, M. H. (Northwestern University) ; Kirsch, M. (III. Physikalisches Institut A. RWTH Aachen University) ; Kohli, J. M. (Panjab University) ; Kozelov, A. V. (Institute for High Energy Physics) ; Kraus, J. (Michigan State University) ; Kumar, A. (State University of New York) ; Kupco, A. (Center for Particle Physics. Institute of Physics. Academy of Sciences of the Czech Republic) ; KurČa, T. (Université de Lyon) ; Kuzmin, V. A. (Moscow State University) ; Kvita, J. (Center for Particle Physics. Charles University. Faculty of Mathematics and Physics) ; Lam, D. (University of Notre Dame) ; Lammers, S. (Indiana University) ; Landsberg, G. (Brown University) ; Lebrun, P. (Université de Lyon) ; Lee, H. S. (Korea Detector Laboratory. Korea University) ; Lee, W. M. (Fermi National Accelerator Laboratory) ; Leflat, A. (Moscow State University) ; Lellouch, J. (LPNHE. IN2P3/CNRS. Universités Paris VI and VII) ; Li, L. (University of California) ; Li, Q. Z. (Fermi National Accelerator Laboratory) ; Lietti, S. M. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Lim, J. K. (Korea Detector Laboratory. Korea University) ; Lincoln, D. (Fermi National Accelerator Laboratory) ; Linnemann, J. (Michigan State University) ; Lipaev, V. V. (Institute for High Energy Physics) ; Lipton, R. (Fermi National Accelerator Laboratory) ; Liu, Y. (University of Science and Technology of China) ; Liu, Z. (York University) ; Lobodenko, A. (Petersburg Nuclear Physics Institute) ; Lokajicek, M. (Center for Particle Physics. Institute of Physics. Academy of Sciences of the Czech Republic) ; Love, P. (Lancaster University) ; Lubatti, H. J. (University of Washington) ; Luna-Garcia, R. (CINVESTAV) ; Lyon, A. L. (Fermi National Accelerator Laboratory) ; Maciel, A. K. A. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Mackin, D. (Rice University) ; Mättig, P. (University of Wuppertal) ; Magaña-Villalba, R. (CINVESTAV) ; Mal, P. K. (University of Arizona) ; Malik, S. (University of Nebraska) ; Malyshev, V. L. (Joint Institute for Nuclear Research) ; Maravin, Y. (Kansas State University) ; Martínez-Ortega, J. (CINVESTAV) ; McCarthy, R. (State University of New York) ; McGivern, C. L. (University of Kansas) ; Meijer, M. M. (Radboud University Nijmegen/NIKHEF) ; Melnitchouk, A. (University of Mississippi) ; Mendoza, L. (Universidad de los Andes) ; Menezes, D. (Northern Illinois University) ; Mercadante, P. G. (Universidade Federal do ABC (Brasil)) ; Merkin, M. (Moscow State University) ; Meyer, A. (III. Physikalisches Institut A. RWTH Aachen University) ; Meyer, J. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Mondal, N. K. (Tata Institute of Fundamental Research) ; Moulik, T. (University of Kansas) ; Muanza, G. S. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Mulhearn, M. (University of Virginia) ; Mundal, O. (Physikalisches Institut. Universität Bonn) ; Mundim, L. (Universidade do Estado do Rio de Janeiro) ; Nagy, E. (CPPM. Aix-Marseille Université. CNRS/IN2P3) ; Naimuddin, M. (Delhi University) ; Narain, M. (Brown University) ; Nayyar, R. (Delhi University) ; Neal, H. A. (University of Michigan) ; Negret, J. P. (Universidad de los Andes) ; Neustroev, P. (Petersburg Nuclear Physics Institute) ; Nilsen, H. (Physikalisches Institut. Universität Freiburg) ; Nogima, H. (Universidade do Estado do Rio de Janeiro) ; Novaes, S. F. (Instituto de Física Teórica. Universidade Estadual Paulista) ; Nunnemann, T. (Ludwig-Maximilians-Universität München) ; Obrant, G. (Petersburg Nuclear Physics Institute) ; Onoprienko, D. (Kansas State University) ; Orduna, J. (CINVESTAV) ; Osman, N. (Imperial College London) ; Osta, J. (University of Notre Dame) ; Otec, R. (Czech Technical University in Prague) ; Otero y Garzón, G. J. (Universidad de Buenos Aires) ; Owen, M. (The University of Manchester) ; Padilla, M. (University of California) ; Padley, P. (Rice University) ; Pangilinan, M. (Brown University) ; Parashar, N. (Purdue University Calumet) ; Parihar, V. (Brown University) ; Park, S. J. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Park, S. K. (Korea Detector Laboratory. Korea University) ; Parsons, J. (Columbia University) ; Partridge, R. (Brown University) ; Parua, N. (Indiana University) ; Patwa, A. (Brookhaven National Laboratory) ; Penning, B. (Fermi National Accelerator Laboratory) ; Perfilov, M. (Moscow State University) ; Peters, K. (The University of Manchester) ; Peters, Y. (The University of Manchester) ; Pétroff, P. (LAL. IN2P3/CNRS. Université Paris-Sud) ; Piegaia, R. (Universidad de Buenos Aires) ; Piper, J. (Michigan State University) ; Pleier, M. A. (Brookhaven National Laboratory) ; Podesta-Lerma, P. L. M. (CINVESTAV) ; Podstavkov, V. M. (Fermi National Accelerator Laboratory) ; Pol, M. E. (LAFEX. Centro Brasileiro de Pesquisas Físicas) ; Polozov, P. (Institute for Theoretical and Experimental Physics) ; Popov, A. V. (Institute for High Energy Physics) ; Prewitt, M. (Rice University) ; Price, D. (Indiana University) ; Protopopescu, S. (Brookhaven National Laboratory) ; Qian, J. (University of Michigan) ; Quadt, A. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Quinn, B. (University of Mississippi) ; Rangel, M. S. (LAL. IN2P3/CNRS. Université Paris-Sud) ; Ranjan, K. (Delhi University) ; Ratoff, P. N. (Lancaster University) ; Razumov, I. (Institute for High Energy Physics) ; Renkel, P. (Southern Methodist University) ; Rich, P. (The University of Manchester) ; Rijssenbeek, M. (State University of New York) ; Ripp-Baudot, I. (IPHC. Université de Strasbourg. CNRS/IN2P3) ; Rizatdinova, F. (Oklahoma State University) ; Robinson, S. (Imperial College London) ; Rominsky, M. (University of Oklahoma) ; Royon, C. (CEA. Irfu. SPP) ; Rubinov, P. (Fermi National Accelerator Laboratory) ; Ruchti, R. (University of Notre Dame) ; Safronov, G. (Institute for Theoretical and Experimental Physics) ; Sajot, G. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3. Institut National Polytechnique de Grenoble) ; Sánchez-Hernández, A. (CINVESTAV) ; Sanders, M. P. (Ludwig-Maximilians-Universität München) ; Sanghi, B. (Fermi National Accelerator Laboratory) ; Savage, G. (Fermi National Accelerator Laboratory) ; Sawyer, L. (Louisiana Tech University) ; Scanlon, T. (Imperial College London) ; Schaile, D. (Ludwig-Maximilians-Universität München) ; Schamberger, R. D. (State University of New York) ; Scheglov, Y. (Petersburg Nuclear Physics Institute) ; Schellman, H. (Northwestern University) ; Schliephake, T. (University of Wuppertal) ; Schlobohm, S. (University of Washington) ; Schwanenberger, C. (The University of Manchester) ; Schwienhorst, R. (Michigan State University) ; Sekaric, J. (University of Kansas) ; Severini, H. (University of Oklahoma) ; Shabalina, E. (II. Physikalisches Institut. Georg-August-Universität Göttingen) ; Shary, V. (CEA. Irfu. SPP) ; Shchukin, A. A. (Institute for High Energy Physics) ; Shivpuri, R. K. (Delhi University) ; Simak, V. (Czech Technical University in Prague) ; Sirotenko, V. (Fermi National Accelerator Laboratory) ; Skubic, P. (University of Oklahoma) ; Slattery, P. (University of Rochester) ; Smirnov, D. (University of Notre Dame) ; Snow, G. R. (University of Nebraska) ; Snow, J. (Langston University) ; Snyder, S. (Brookhaven National Laboratory) ; Söldner-Rembold, S. (The University of Manchester) ; Sonnenschein, L. (III. Physikalisches Institut A. RWTH Aachen University) ; Sopczak, A. (Lancaster University) ; Sosebee, M. (University of Texas) ; Soustruznik, K. (Center for Particle Physics. Charles University. Faculty of Mathematics and Physics) ; Spurlock, B. (University of Texas) ; Stark, J. (LPSC. Université Joseph Fourier Grenoble 1. CNRS/IN2P3. Institut National Polytechnique de Grenoble) ; Stolin, V. (Institute for Theoretical and Experimental Physics) ; Stoyanova, D. A. (Institute for High Energy Physics) ; Strandberg, J. (University of Michigan) ; Strang, M. A. (State University of New York) ; Strauss, E. (State University of New York) ; Strauss, M. (University of Oklahoma) ; Ströhmer, R. (Ludwig-Maximilians-Universität München) ; Strom, D. (University of Illinois at Chicago) ; Stutte, L. (Fermi National Accelerator Laboratory) ; Svoisky, P. (Radboud University Nijmegen/NIKHEF) ; Takahashi, M. (The University of Manchester) ; Tanasijczuk, A. (Universidad de Buenos Aires) ; Taylor, W. (York University) ; Tiller, B. (Ludwig-Maximilians-Universität München) ; Titov, M. (CEA. Irfu. SPP) ; Tokmenin, V. V. (Joint Institute for Nuclear Research) ; Tsybychev, D. (State University of New York) ; Tuchming, B. (CEA. Irfu. SPP) ; Tully, C. (Princeton University) ; Tuts, P. M. (Columbia University) ; Unalan, R. (Michigan State University) ; Uvarov, L. (Petersburg Nuclear Physics Institute) ; Uvarov, S. (Petersburg Nuclear Physics Institute) ; Uzunyan, S. (Northern Illinois University) ; van den Berg, P. J. (FOM-Institute NIKHEF. University of Amsterdam/NIKHEF) ; Van Kooten, R. (Indiana University) ; van Leeuwen, W. M. (FOM-Institute NIKHEF. University of Amsterdam/NIKHEF) ; Varelas, N. (University of Illinois at Chicago) ; Varnes, E. W. (University of Arizona) ; Vasilyev, I. A. (Institute for High Energy Physics) ; Verdier, P. (Université de Lyon) ; Vertogradov, L. S. (Joint Institute for Nuclear Research) ; Verzocchi, M. (Fermi National Accelerator Laboratory) ; Vesterinen, M. (The University of Manchester) ; Vilanova, D. (CEA. Irfu. SPP) ; Vint, P. (Imperial College London) ; Vokac, P. (Czech Technical University in Prague) ; Wahl, H. D. (Florida State University) ; Wang, M. H. L. S. (University of Rochester) ; Warchol, J. (University of Notre Dame) ; Watts, G. (University of Washington) ; Wayne, M. (University of Notre Dame) ; Weber, G. (Institut für Physik. Universität Mainz) ; Weber, M. (Fermi National Accelerator Laboratory) ; Wetstein, M. (University of Maryland) ; White, A. (University of Texas) ; Wicke, D. (Institut für Physik. Universität Mainz) ; Williams, M. R. J. (Lancaster University) ; Wilson, G. W. (University of Kansas) ; Wimpenny, S. J. (University of California) ; Wobisch, M. (Louisiana Tech University) ; Wood, D. R. (Northeastern University) ; Wyatt, T. R. (The University of Manchester) ; Xie, Y. (Fermi National Accelerator Laboratory) ; Xu, C. (University of Michigan) ; Yacoob, S. (Northwestern University) ; Yamada, R. (Fermi National Accelerator Laboratory) ; Yang, W. C. (The University of Manchester) ; Yasuda, T. (Fermi National Accelerator Laboratory) ; Yatsunenko, Y. A. (Joint Institute for Nuclear Research) ; Ye, Z. (Fermi National Accelerator Laboratory) ; Yin, H. (University of Science and Technology of China) ; Yip, K. (Brookhaven National Laboratory) ; Yoo, H. D. (Brown University) ; Youn, S. W. (Fermi National Accelerator Laboratory) ; Yu, J. (University of Texas) ; Zeitnitz, C. (University of Wuppertal) ; Zelitch, S. (University of Virginia) ; Zhao, T. (University of Washington) ; Zhou, B. (University of Michigan) ; Zhu, J. (State University of New York) ; Zielinski, M. (University of Rochester) ; Zieminska, D. (Indiana University) ; Živković, Lada (Columbia University) ; Zutshi, Vishnu V (Northern Illinois University) ; Zverev, E. G. (Moscow State University)
We present a measurement of the differential cross section for tt events produced in pp collisions at √s=1. 96 TeV as a function of the transverse momentum (pT) of the top quark. The selected events contain a high-pT lepton (γ), a large imbalance in pT, four or more jets with at least one candidate for a b jet, and correspond to 1 fb of integrated luminosity recorded with the D0 detector. [...]
2010 - 10.1016/j.physletb.2010.09.011
Physics letters. B, Vol. 693,issue 5 (Oct. 2010) , p. 515-521  

Articles : 33 registres trobats   1 - 10següentfinal  anar al registre:
Documents de recerca 5 registres trobats  
1.
218 p, 7.2 MB Biodistribución de bacteriófagos en mamíferos tras terapia fágica oral y emergencia de resistencia bacteriana a los fagos / Otero Carrera, Jennifer ; Llagostera Casas, Montserrat, dir. ; Cortés Garmendia, M. Pilar, dir. ; Universitat Autònoma de Barcelona. Departament de Genètica i de Microbiologia
La aplicación terapéutica de bacteriófagos líticos como alternativa a los antimicrobianos tradicionales ha resurgido en los últimos años. Sin embargo, existen algunos aspectos asociados a la terapia fágica que necesitan estudiarse con más profundidad para permitir su definitiva implementación. [...]
Interest in the therapeutic application of virulent bacteriophages as an alternative to traditional antimicrobials has re-emerged in recent years. However, more detailed studies of several aspects associated with phage therapy are needed to allow its definitive implementation. [...]

[Barcelona] : Universitat Autònoma de Barcelona, 2020.  
2.
150 p, 13.7 MB Modalidades y uso del material leñoso entre grupos cazadores-recolectores patagónicos (Argentina). Métodos y técnicas de estudio del material leñoso arqueológico / Caruso Fermé, Laura ; Piqué Huerta, Raquel, dir. (Universitat Autònoma de Barcelona. Departament de Prehistòria) ; Gómez Otero, Julieta, dir. ; Universitat Autònoma de Barcelona. Departament de Prehistòria
Este trabajo tiene por objetivo caracterizar las modalidades de adquisición y uso del recurso leñoso y establecer qué factores intervinieron en la organización de las mismas. En este sentido se pretende definir los criterios que rigieron la selección de este recurso, para ser utilizado como combustible y materia prima para la fabricación de instrumentos, por parte de las sociedades cazadoras-recolectoras que habitaron distintas zonas de la Patagonia (Argentina). [...]
This work aims to characterize patterns of resource acquisition and use of woody material and establish what factors were involved in organizing them. To this end we define the criteria that governed the selection of this resource, to be used as fuel and as feedstock for the manufacture of instruments, by the hunter-gatherer societies that inhabited different areas of Patagonia (Argentina). [...]

[Barcelona] : Universitat Autònoma de Barcelona, 2014
3 documents
3.
1 p, 1.0 MB Staphylococcus aureus vaccine : use of ISD system components in the develpment of a S. aureus vaccine / Otero Carrera, Jennifer ; Barbé García, Jordi, dir. (Universitat Autònoma de Barcelona. Departament de Genètica i de Microbiologia) ; Universitat Autònoma de Barcelona. Facultat de Biociències
2013
Grau en Microbiologia [816]  
4.
32 p, 115.0 KB Which firms want PhDs? The effect of the university-industry relationship on the PhD labour market / García Quevedo, José, 1963- (Universitat de Barcelona) ; Mas Verdú, Francisco (Universitat Politècnica de València) ; Polo Otero, José (Universitat de Barcelona) ; Xarxa de Referència en Economia Aplicada (XREAP)
PhD graduates hold the highest education degree, are trained to conduct research and can be considered a key element in the creation, commercialization and diffusion of innovations. The impact of PhDs on innovation and economic development takes place through several channels such as the accumulation of scientific capital stock, the enhancement of technology transfers and the promotion of cooperation relationships in innovation processes. [...]
Xarxa de Referència en Economia Aplicada (XREAP) 2010 (XREAP ; 2010-2)  
5.
51 p, 2.6 MB Bioadversidad celular sobre superficies de matrices o armazones tisulares / Couceiro Otero, José ; Navarro Quilis, Antonio, dir. (Universitat Autònoma de Barcelona. Departament de Cirurgia) ; Couceiro Follente, José, dir.
- Introducción: La reparación de los grandes defectos óseos ha resultado un problema de interés clínico para los cirujanos ortopédicos durante siglos, poniéndose en práctica múltiples estrategias terapéuticas, tales como los transportes óseos, o la utilización de peronés vascularizados. [...]
Bellaterra : Universitat Autònoma de Barcelona, 2008  

Fons personals i institucionals 57 registres trobats  1 - 10següentfinal  anar al registre:
1.
2 p, 748.7 KB Carta de Ricardo Díez Hochleitner a José María Otero Navascués, Presidente de la JEN, sobre la possibilitat que diversos catedràtics i profesors de la Universidad de Zaragoza rebin un suplement econòmic per part del Instituto de Estudios Nucleares / Díez Hochleitner, Ricardo ; Otero de Navascués, José María 1907-1983
1970  
 Accés restringit a la UAB
2.
1 p, 871.8 KB Carta de José María Otero, Presidente de la Junta de Energía Nuclear (Madrid) al prof. Luis María Garrido denegant fons per a l'edició de les Comunicaciones de las Jornadas Internacionales de Física de Sitges / Otero Moreno, José María, 1943- ; Garrido, L. 1930- (Luis)
1972  
 Accés restringit a la UAB
3.
6 p, 7.3 MB Carta de Bruno Escoubès i Salomé de Unamuno (Junta de Energía Nuclear) al Dr. José María Otero Navascués, Presidente de la JEN, sobre la inhabilitació de Cayetano López Martínez i Jerónimo Limón Vega per a ingressar a la dita Junta per motius polítics / Escoubès, Bruno ; Otero de Navascués, José María 1907-1983
1970  
 Accés restringit a la UAB
4.
1 p, 79.9 KB Certificat de José Ma. Otero Navascues a Miquel Tomás / Otero Navascués, José María, 1907-1983 ; Tomàs Ondiviela, Miquel, 1936-2011
Certificat de José Ma. Otero Navascués a Miquel Tomás.
1972  
5.
1 p, 123.7 KB Carta de José María Otero Navascués a Miquel Tomàs Ondiviela / Otero Navascués, José María, 1907-1983 ; Tomàs Ondiviela, Miquel, 1936-2011
Carta de José María Otero Navascués a Miquel Tomàs Ondiviela en resposta a la seva carta [reg. AMTO 60]. Lamenta la dimissió de la Junta de Energía Nuclear (JEN) i li comenta que espera la reincorporació d'Espanya al CERN en breu. [...]
1969  
6.
2 p, 342.2 KB Carta de Miquel Tomàs Ondiviela a José María Otero Navascués / Tomàs Ondiviela, Miquel, 1936-2011 ; Otero Navascués, José María, 1907-1983.
Carta de Miquel Tomàs Ondiviela a José María Otero Navascués indicant al seva dimissió de la Junta d'Energía Nuclear i la seva incorporació a l'Empresa nacional de Celulosas degut, en gran mesura, a la retirada d'Espanya del CERN. [...]
1969  
7.
1 p, 220.7 KB Donde hoy corren toros, corrían protones / Otero Navascués, José Maria
Gabinet de premsa de la Junta de Energía Nuclear (JEN). Fotocòpia retall diari NUEVO DIARIO. Article de José Maria Otero Navascués "Donde hoy corren toros, corrían protones".
1968
Nuevo diario, (28 de mayo de 1968)  
8.
4 p, 12.0 MB Carta de José María Otero Navascués a Carlos Sánchez del Río y Sierra / Otero de Navascués, José María, 1907-1983
Otero Navascués critica a Sánchez del Río per posicionar-se públicament en contra de continuïtat d'Espanya al CERN; inclou quadre comparatiu CERN i JEN.
1969  
 Accés restringit a la UAB
9.
3 p, 367.4 KB Certificado de trabajos / Otero Navascués, José María 1907-1983
Certificado de la Junta de Energía Nuclear (JEN), firmado por José María Otero Navascués, como vicepresidente de la misma, en el que detalla el trabajo actual de Ortiz Fornaguera en la JEN así como sus trabajos anteriores.
1955  
10.
1 p, 2.2 MB Certificado del CSIC Instituto de Óptica "Daza de Valdés" / Otero Navascués, José María 1907-1983 ; Consejo Superior de Investigaciones Científicas (Espanya). Instituto de Óptica "Daza de Valdés"
Certificado de José María Otero Navascués, como miembro de número de la RACEFyN y director del Instituto de Óptica del CSIC, de que Ramón Ortiz Fornaguera había trabajado en la sección de óptica teórica desde 1946 a 1948.
1950  

Fons personals i institucionals : 57 registres trobats   1 - 10següentfinal  anar al registre:
Vegeu també: autors amb noms similars
1 Otero, J.C.
7 Otero, Jorge
2 Otero, José María
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