Skip to main navigation Skip to search Skip to main content

Search for new physics using QUAERO: A general interface to D0 Event data

  • V. M. Abazov
  • , B. Abbott
  • , A. Abdesselam
  • , M. Abolins
  • , V. Abramov
  • , B. S. Acharya
  • , D. L. Adams
  • , M. Adams
  • , S. N. Ahmed
  • , G. D. Alexeev
  • , G. A. Alves
  • , N. Amos
  • , E. W. Anderson
  • , Y. Arnoud
  • , M. M. Baarmand
  • , V. V. Babintsev
  • , L. Babukhadia
  • , T. C. Bacon
  • , A. Baden
  • , B. Baldin
  • P. W. Balm, S. Banerjee, E. Barberis, P. Baringer, J. Barreto, J. F. Bartlett, U. Bassler, D. Bauer, A. Bean, M. Begel, A. Belyaev, S. B. Beri, G. Bernardi, I. Bertram, A. Besson, R. Beuselinck, V. A. Bezzubov, P. C. Bhat, V. Bhatnagar, M. Bhattacharjee, G. Blazey, S. Blessing, A. Boehnlein, N. I. Bojko, F. Borcherding, K. Bos, A. Brandt, R. Breedon, G. Briskin, R. Brock, G. Brooijmans, A. Bross, D. Buchholz, M. Buehler, V. Buescher, V. S. Burtovoi, J. M. Butler, F. Canelli, W. Carvalho, D. Casey, Z. Casilum, H. Castilla-Valdez, D. Chakraborty, K. M. Chan, S. V. Chekulaev, D. K. Cho, S. Choi, S. Chopra, J. H. Christenson, M. Chung, D. Claes, A. R. Clark, J. Cochran, L. Coney, B. Connolly, W. E. Cooper, D. Coppage, S. Crépé-Renaudin, M. A.C. Cummings, D. Cutts, G. A. Davis, K. Davis, K. De, S. J. De Jong, K. Del Signore, M. Demarteau, R. Demina, P. Demine, D. Denisov, S. P. Denisov, S. Desai, H. T. Diehl, M. Diesburg, G. Di Loreto, S. Doulas, P. Draper, Y. Ducros, L. V. Dudko, S. Duensing, L. Duflot, S. R. Dugad, A. Duperrin, A. Dyshkant, D. Edmunds, J. Ellison, V. D. Elvira, R. Engelmann, S. Eno, G. Eppley, P. Ermolov, O. V. Eroshin, J. Estrada, H. Evans, V. N. Evdokimov, T. Fahland, S. Feher, D. Fein, T. Ferbel, F. Filthaut, H. E. Fisk, Y. Fisyak, E. Flattum, F. Fleuret, M. Fortner, H. Fox, K. C. Frame, S. Fu, S. Fuess, E. Gallas, A. N. Galyaev, M. Gao, V. Gavrilov, R. J. Genik, K. Genser, C. E. Gerber, Y. Gershtein, R. Gilmartin, G. Ginther, B. Gómez, G. Gómez, P. I. Goncharov, J. L. González Solís, H. Gordon, L. T. Goss, K. Gounder, A. Goussiou, N. Graf, G. Graham, P. D. Grannis, J. A. Green, H. Greenlee, S. Grinstein, L. Groer, S. Grünendahl, A. Gupta, S. N. Gurzhiev, G. Gutierrez, P. Gutierrez, N. J. Hadley, H. Haggerty, S. Hagopian, V. Hagopian, R. E. Hall, P. Hanlet, S. Hansen, J. M. Hauptman, C. Hays, C. Hebert, D. Hedin, J. M. Heinmiller, A. P. Heinson, U. Heintz, T. Heuring, M. D. Hildreth, R. Hirosky, J. D. Hobbs, B. Hoeneisen, Y. Huang, R. Illingworth, A. S. Ito, M. Jaffré, S. Jain, R. Jesik, K. Johns, M. Johnson, A. Jonckheere, M. Jones, H. Jöstlein, A. Juste, W. Kahl, S. Kahn, E. Kajfasz, A. M. Kalinin, D. Karmanov, D. Karmgard, Z. Ke, R. Kehoe, A. Khanov, A. Kharchilava, S. K. Kim, B. Klima, B. Knuteson, W. Ko, J. M. Kohli, A. V. Kostritskiy, J. Kotcher, B. Kothari, A. V. Kotwal, A. V. Kozelov, E. A. Kozlovsky, J. Krane, M. R. Krishnaswamy, P. Krivkova, S. Krzywdzinski, M. Kubantsev, S. Kuleshov, Y. Kulik, S. Kunori, A. Kupco, V. E. Kuznetsov, G. Landsberg, W. M. Lee, A. Leflat, C. Leggett, F. Lehner, J. Li, Q. Z. Li, X. Li, J. G.R. Lima, D. Lincoln, S. L. Linn, J. Linnemann, R. Lipton, A. Lucotte, L. Lueking, C. Lundstedt, C. Luo, A. K.A. Maciel, R. J. Madaras, V. L. Malyshev, V. Manankov, H. S. Mao, T. Marshall, M. I. Martin, R. D. Martin, K. M. Mauritz, B. May, A. A. Mayorov, R. McCarthy, T. McMahon, H. L. Melanson, M. Merkin, K. W. Merritt, C. Miao, H. Miettinen, D. Mihalcea, C. S. Mishra, N. Mokhov, N. K. Mondal, H. E. Montgomery, R. W. Moore, M. Mostafa, H. Da Motta, E. Nagy, F. Nang, M. Narain, V. S. Narasimham, H. A. Neal, J. P. Negret, S. Negroni, T. Nunnemann, D. O'Neil, V. Oguri, B. Olivier, N. Oshima, P. Padley, L. J. Pan, K. Papageorgiou, A. Para, N. Parashar, R. Partridge, N. Parua, M. Paterno, A. Patwa, B. Pawlik, J. Perkins, M. Peters, O. Peters, P. Pétroff, R. Piegaia, B. G. Pope, E. Popkov, H. B. Prosper, S. Protopopescu, J. Qian, R. Raja, S. Rajagopalan, E. Ramberg, P. A. Rapidis, N. W. Reay, S. Reucroft, M. Ridel, M. Rijssenbeek, F. Rizatdinova, T. Rockwell, M. Roco, P. Rubinov, R. Ruchti, J. Rutherfoord, B. M. Sabirov, G. Sajot, A. Santoro, L. Sawyer, R. D. Schamberger, H. Schellman, A. Schwartzman, N. Sen, E. Shabalina, R. K. Shivpuri, D. Shpakov, M. Shupe, R. A. Sidwell, V. Simak, H. Singh, J. B. Singh, V. Sirotenko, P. Slattery, E. Smith, R. P. Smith, R. Snihur, G. R. Snow, J. Snow, S. Snyder, J. Solomon, V. Sorín, M. Sosebee, N. Sotnikova, K. Soustruznik, M. Souza, N. R. Stanton, G. Steinbrück, R. W. Stephens, F. Stichelbaut, D. Stoker, V. Stolin, A. Stone, D. A. Stoyanova, M. Strauss, M. Strovink, L. Stutte, A. Sznajder, M. Talby, W. Taylor, S. Tentindo-Repond, S. M. Tripathi, T. G. Trippe, A. S. Turcot, P. M. Tuts, P. Van Gemmeren, V. Vaniev, R. Van Kooten, N. Varelas, L. S. Vertogradov, F. Villeneuve-Seguier, A. A. Volkov, A. P. Vorobiev, H. D. Wahl, H. Wang, Z. M. Wang, J. Warchol, G. Watts, M. Wayne, H. Weerts, A. White, J. T. White, D. Whiteson, J. A. Wightman, D. A. Wijngaarden, S. Willis, S. J. Wimpenny, J. Womersley, D. R. Wood, R. Yamada, P. Yamin, T. Yasuda, Y. A. Yatsunenko, K. Yip, S. Youssef, J. Yu, Z. Yu, M. Zanabria, H. Zheng, Z. Zhou, M. Zielinski, D. Zieminska, A. Zieminski, V. Zutshi, E. G. Zverev, A. Zylberstejn
  • Joint Institute for Nuclear Research
  • University of Oklahoma
  • IN2P3-CNRS
  • Michigan State University
  • Institute for High Energy Physics of National Research Centre ‘Kurchatov Institute’
  • Tata Institute of Fundamental Research
  • University of Texas at Arlington
  • University of Illinois at Chicago
  • Radboud University Nijmegen
  • Centro Brasileiro de Pesquisas Físicas
  • University of Michigan, Ann Arbor
  • Iowa State University
  • Stony Brook University
  • Imperial College London
  • University of Maryland, College Park
  • Fermi National Accelerator Laboratory
  • University of Amsterdam
  • University of California at Berkeley
  • University of Kansas
  • Université Pierre et Marie Curie
  • University of Rochester
  • Florida State University
  • Panjab University
  • Lancaster University
  • Northern Illinois University
  • University of California at Davis
  • Brown University
  • Northwestern University
  • Johannes Gutenberg University Mainz
  • Boston University
  • Universidade do Estado do Rio de Janeiro
  • Centro de Investigacion y de Estudios Avanzados del Instituto Politécnico Nacional
  • University of California at Riverside
  • Brookhaven National Laboratory
  • University of Nebraska-Lincoln
  • University of Notre Dame
  • University of Arizona
  • Kansas State University
  • Northeastern University
  • CEA Saclay
  • Lomonosov Moscow State University
  • Aix-Marseille Université
  • Rice University
  • Columbia University
  • University of California at Irvine
  • Alikhanov Institute for Theoretical and Experimental Physics
  • Universidad de los Andes Colombia
  • Texas A&M University
  • Universidad de Buenos Aires
  • California State University Fresno
  • University of Virginia
  • Universidad San Francisco de Quito
  • University of Hawai'i at Mānoa
  • CAS - Institute of High Energy Physics
  • Seoul National University
  • Charles University
  • Czech Academy of Sciences
  • Indiana University Bloomington
  • Langston University
  • Polish Academy of Sciences
  • Louisiana Tech University
  • University of Delhi
  • University of Washington

Research output: Contribution to journalArticlepeer-review

16 Scopus citations

Abstract

A method called QUAERO, for automatic optimization of searches for physics beyond the standard model is presented. The method provides a mechanism that allows the availability of high energy collider data. The algorithms used in QUAERO and the final states available for analysis are described. Results showed that the limits obtained on application of the method to standard model and resonant production are comparable to those from previous searches at hadron colliders.

Original languageEnglish
Article number231801
Pages (from-to)2318011-2318016
Number of pages6
JournalPhysical Review Letters
Volume87
Issue number23
StatePublished - Dec 3 2001

Fingerprint

Dive into the research topics of 'Search for new physics using QUAERO: A general interface to D0 Event data'. Together they form a unique fingerprint.

Cite this