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- Title:
- Search for the standard model Higgs boson in ZH→ + -bb̄ production with the D0 detector in 9.7fb -1 of pp̄ collisions at √s=1.96TeV
- Abazov, V. M.
- Abbott, B.
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- Chakraborty, D.
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- Chandra, A.
- Chapon, E.
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- Cihangir, S.
- Claes, D.
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- Deterre, C.
- Devaughan, K.
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- Diesburg, M.
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- Evdokimov, V. N.
- Facini, G.
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- Fortner, M.
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- García-González, J. A.
- García-Guerra, G. A.
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- Ginther, G.
- Golovanov, G.
- Goussiou, A.
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- Guillemin, T.
- Gutierrez, G.
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- Hagopian, S.
- Haley, J.
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- Harel, A.
- Hauptman, J. M.
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- Hedin, D.
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- Heintz, U.
- Hensel, C.
- Heredia-De La Cruz, I.
- Herner, K.
- Hesketh, G.
- Hildreth, M. D.
- Hirosky, R.
- Hoang, T.
- Hobbs, J. D.
- Hoeneisen, B.
- Hogan, J.
- Hohlfeld, M.
- Howley, I.
- Hubacek, Z.
- Hynek, V.
- Iashvili, I.
- Ilchenko, Y.
- Illingworth, R.
- Ito, A. S.
- Jabeen, S.
- Jaffré, M.
- Jayasinghe, A.
- Jeong, M. S.
- Jesik, R.
- Jiang, P.
- Johns, K.
- Johnson, E.
- Johnson, M.
- Jonckheere, A.
- Jonsson, P.
- Joshi, J.
- Jung, A. W.
- Juste, A.
- Kaadze, K.
- Kajfasz, E.
- Karmanov, D.
- Kasper, P. A.
- Katsanos, I.
- Kehoe, R.
- Kermiche, S.
- Khalatyan, N.
- Khanov, A.
- Kharchilava, A.
- Kharzheev, Y. N.
- Kiselevich, I.
- Kohli, J. M.
- Kozelov, A. V.
- Kraus, J.
- Kulikov, S.
- Kumar, A.
- Kupco, A.
- Kurča, T.
- Kuzmin, V. A.
- Lammers, S.
- Landsberg, G.
- Lebrun, P.
- Lee, H. S.
- Lee, S. W.
- Lee, W. M.
- Lei, X.
- Lellouch, J.
- Li, D.
- Li, H.
- Li, L.
- Li, Q. Z.
- Lim, J. K.
- Lincoln, D.
- Linnemann, J.
- Lipaev, V. V.
- Lipton, R.
- Liu, H.
- Liu, Y.
- Lobodenko, A.
- Lokajicek, M.
- Lopes de Sa, R.
- Lubatti, H. J.
- Luna-Garcia, R.
- Lyon, A. L.
- MacIel, A. K A
- Madar, R.
- Magaña-Villalba, R.
- Malik, S.
- Malyshev, V. L.
- Maravin, Y.
- Martínez-Ortega, J.
- McCarthy, R.
- McGivern, C. L.
- Meijer, M. M.
- Melnitchouk, A.
- Menezes, D.
- Mercadante, P. G.
- Merkin, M.
- Meyer, A.
- Meyer, J.
- Miconi, F.
- Mondal, N. K.
- Mulhearn, M.
- Nagy, E.
- Naimuddin, M.
- Narain, M.
- Nayyar, R.
- Neal, H. A.
- Negret, J. P.
- Neustroev, P.
- Nguyen, H. T.
- Nunnemann, T.
- Orduna, J.
- Osman, N.
- Osta, J.
- Padilla, M.
- Pal, A.
- Parashar, N.
- Parihar, V.
- Park, S. K.
- Partridge, R.
- Parua, N.
- Patwa, A.
- Penning, B.
- Perfilov, M.
- Peters, Y.
- Petridis, K.
- Petrillo, G.
- Pétroff, P.
- Pleier, M. A.
- Podesta-Lerma, P. L M
- Podstavkov, V. M.
- Popov, A. V.
- Prewitt, M.
- Price, D.
- Prokopenko, N.
- Qian, J.
- Quadt, A.
- Quinn, B.
- Rangel, M. S.
- Ranjan, K.
- Ratoff, P. N.
- Razumov, I.
- Renkel, P.
- Ripp-Baudot, I.
- Rizatdinova, F.
- Rominsky, M.
- Ross, A.
- Royon, C.
- Rubinov, P.
- Ruchti, R.
- Sajot, G.
- Salcido, P.
- Sánchez-Hernández, A.
- Sanders, M. P.
- Santos, A. S.
- Savage, G.
- Sawyer, L.
- Scanlon, T.
- Schamberger, R. D.
- Scheglov, Y.
- Schellman, H.
- Schlobohm, S.
- Schwanenberger, C.
- Schwienhorst, R.
- Sekaric, J.
- Severini, H.
- Shabalina, E.
- Shary, V.
- Shaw, S.
- Shchukin, A. A.
- Shivpuri, R. K.
- Simak, V.
- Skubic, P.
- Slattery, P.
- Smirnov, D.
- Smith, K. J.
- Snow, G. R.
- Snow, J.
- Snyder, S.
- Söldner-Rembold, S.
- Sonnenschein, L.
- Soustruznik, K.
- Stark, J.
- Stoyanova, D. A.
- Strauss, M.
- Suter, L.
- Svoisky, P.
- Takahashi, M.
- Titov, M.
- Tokmenin, V. V.
- Tsai, Y. T.
- Tschann-Grimm, K.
- Tsybychev, D.
- Tuchming, B.
- Tully, C.
- Uvarov, L.
- Uvarov, S.
- Uzunyan, S.
- Van Kooten, R.
- Van Leeuwen, W. M.
- Varelas, N.
- Varnes, E. W.
- Vasilyev, I. A.
- Verdier, P.
- Verkheev, A. Y.
- Vertogradov, L. S.
- Verzocchi, M.
- Vesterinen, M.
- Vilanova, D.
- Vokac, P.
- Wahl, H. D.
- Wang, M. H L S
- Warchol, J.
- Watts, G.
- Wayne, M.
- Weichert, J.
- Welty-Rieger, L.
- White, A.
- Wicke, D.
- Williams, M. R J
- Wilson, G. W.
- Wobisch, M.
- Wood, D. R.
- Wyatt, T. R.
- Xie, Y.
- Yamada, R.
- Yang, S.
- Yang, W. C.
- Yasuda, T.
- Yatsunenko, Y. A.
- Ye, W.
- Ye, Z.
- Yin, H.
- Yip, K.
- Youn, S. W.
- Yu, J. M.
- Zennamo, J.
- Zhao, T.
- Zhao, T. G.
- Zhou, B.
- Zhu, J.
- Zielinski, M.
- Zieminska, D.
- Zivkovic, L.
- Centro Brasileiro de Pesquisas Físicas (CBPF)
- Universidade do Estado do Rio de Janeiro (UERJ)
- Universidade Federal do ABC (UFABC)
- University of Science and Technology of China
- Universidad de los Andes
- Center for Particle Physics
- Czech Technical University in Prague
- Academy of Sciences of the Czech Republic
- Universidad San Francisco de Quito
- CNRS/IN2P3
- SPP
- RWTH Aachen University
- Universität Freiburg
- Georg-August-Universität Göttingen
- Universität Mainz
- Ludwig-Maximilians-Universität München
- Bergische Universität Wuppertal
- Panjab University
- Delhi University
- Tata Institute of Fundamental Research
- University College Dublin
- Korea University
- CINVESTAV
- Nikhef
- Radboud University Nijmegen
- Joint Institute for Nuclear Research
- Institute for Theoretical and Experimental Physics (ITEP)
- Moscow State University
- Institute for High Energy Physics
- Petersburg Nuclear Physics Institute
- Institut de Física d'Altes Energies (IFAE)
- Uppsala University
- Lancaster University
- Imperial College London
- University of Manchester
- University of Arizona
- University of California, Riverside (UCR)
- Florida State University
- Fermi National Accelerator Laboratory
- University of Illinois at Chicago
- Northern Illinois University
- Northwestern University (NU)
- Indiana University
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- University of Rochester
- Brookhaven National Laboratory
- Langston University
- University of Oklahoma
- Oklahoma State University
- Brown University
- University of Texas
- Southern Methodist University
- Rice University
- University of Virginia (UVA)
- University of Washington
- Augustana College
- University of Liverpool
- UPIITA-IPN
- DESY
- SLAC
- University College London
- Centro de Investigacion en Computacion-IPN
- Universidad Autonoma de Sinaloa
- Universidade Estadual Paulista (UNESP)
- Université de Lyon
- 0031-9007
- 1079-7114
- We present a search for the standard model (SM) Higgs boson produced in association with a Z boson in 9.7fb -1 of pp̄ collisions collected with the D0 detector at the Fermilab Tevatron Collider at √s=1.96TeV. Selected events contain one reconstructed Z→e +e - or Z→μ +μ - candidate and at least two jets, including at least one jet identified as likely to contain a b quark. To validate the search procedure, we also measure the cross section for ZZ production in the same final state. It is found to be consistent with its SM prediction. We set upper limits on the ZH production cross section times branching ratio for H→bb̄ at the 95% C.L. for Higgs boson masses 90≤M H≤150GeV. The observed (expected) limit for M H=125GeV is 7.1 (5.1) times the SM cross section. © 2012 American Physical Society.
- 20-Sep-2012
- Physical Review Letters, v. 109, n. 12, 2012.
- Branching ratio
- Cross section
- Fermilab Tevatron collider
- Final state
- Higgs boson
- Production cross section
- Search procedures
- The standard model
- Upper limits
- Z Bosons
- High energy physics
- Tellurium compounds
- Bosons
- http://dx.doi.org/10.1103/PhysRevLett.109.121803
- Acesso restrito
- outro
- http://repositorio.unesp.br/handle/11449/73586
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