Phys. Rev. Lett.
82,
2451–2456
(1999)
Inclusive Jet Cross Section in p̅ p Collisions at √s = 1.8TeV
B. Abbott et al. (D0 Collaboration)
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B. Abbott40, M. Abolins37, V. Abramov15, B. S. Acharya8, I. Adam39, D. L. Adams48, M. Adams24, S. Ahn23, H. Aihara17, H. Alves2, N. Amos36, E. W. Anderson30, R. Astur42, M. M. Baarmand42, V. V. Babintsev15, L. Babukhadia16, A. Baden33, V. Balamurali28, B. Baldin23, S. Banerjee8, J. Bantly45, E. Barberis17, P. Baringer31, J. F. Bartlett23, A. Belyaev14, S. B. Beri6, I. Bertram26, V. A. Bezzubov15, P. C. Bhat23, V. Bhatnagar6, M. Bhattacharjee42, N. Biswas28, G. Blazey25, S. Blessing21, P. Bloom18, A. Boehnlein23, N. I. Bojko15, F. Borcherding23, C. Boswell20, A. Brandt23, R. Breedon18, R. Brock37, A. Bross23, D. Buchholz26, V. S. Burtovoi15, J. M. Butler34, W. Carvalho2, D. Casey37, Z. Casilum42, H. Castilla-Valdez11, D. Chakraborty42, S.-M. Chang35, S. V. Chekulaev15, L.-P. Chen17, W. Chen42, S. Choi10, S. Chopra36, B. C. Choudhary20, J. H. Christenson23, M. Chung24, D. Claes38, A. R. Clark17, W. G. Cobau33, J. Cochran20, L. Coney28, W. E. Cooper23, C. Cretsinger41, D. Cullen-Vidal45, M. A. C. Cummings25, D. Cutts45, O. I. Dahl17, K. Davis16, K. De46, K. Del Signore36, M. Demarteau23, D. Denisov23, S. P. Denisov15, H. T. Diehl23, M. Diesburg23, G. Di Loreto37, P. Draper46, Y. Ducros5, L. V. Dudko14, S. R. Dugad8, A. Dyshkant15, D. Edmunds37, J. Ellison20, V. D. Elvira42, R. Engelmann42, S. Eno33, G. Eppley48, P. Ermolov14, O. V. Eroshin15, V. N. Evdokimov15, T. Fahland19, M. K. Fatyga41, S. Feher23, D. Fein16, T. Ferbel41, G. Finocchiaro42, H. E. Fisk23, Y. Fisyak43, E. Flattum23, G. E. Forden16, M. Fortner25, K. C. Frame37, S. Fuess23, E. Gallas46, A. N. Galyaev15, P. Gartung20, V. Gavrilov13, T. L. Geld37, R. J. Genik, II37, K. Genser23, C. E. Gerber23, Y. Gershtein13, B. Gibbard43, B. Gobbi26, B. Gómez4, G. Gómez33, P. I. Goncharov15, J. L. González Solís11, H. Gordon43, L. T. Goss47, K. Gounder20, A. Goussiou42, N. Graf43, P. D. Grannis42, D. R. Green23, H. Greenlee23, S. Grinstein1, P. Grudberg17, S. Grünendahl23, G. Guglielmo44, J. A. Guida16, J. M. Guida45, A. Gupta8, S. N. Gurzhiev15, G. Gutierrez23, P. Gutierrez44, N. J. Hadley33, H. Haggerty23, S. Hagopian21, V. Hagopian21, K. S. Hahn41, R. E. Hall19, P. Hanlet35, S. Hansen23, J. M. Hauptman30, D. Hedin25, A. P. Heinson20, U. Heintz23, R. Hernández-Montoya11, T. Heuring21, R. Hirosky24, J. D. Hobbs42, B. Hoeneisen4,*, J. S. Hoftun45, F. Hsieh36, Ting Hu42, Tong Hu27, T. Huehn20, A. S. Ito23, E. James16, J. Jaques28, S. A. Jerger37, R. Jesik27, T. Joffe-Minor26, K. Johns16, M. Johnson23, A. Jonckheere23, M. Jones22, H. Jöstlein23, S. Y. Jun26, C. K. Jung42, S. Kahn43, G. Kalbfleisch44, D. Karmanov14, D. Karmgard21, R. Kehoe28, M. L. Kelly28, S. K. Kim10, B. Klima23, C. Klopfenstein18, W. Ko18, J. M. Kohli6, D. Koltick29, A. V. Kostritskiy15, J. Kotcher43, A. V. Kotwal39, A. V. Kozelov15, E. A. Kozlovsky15, J. Krane38, M. R. Krishnaswamy8, S. Krzywdzinski23, S. Kuleshov13, S. Kunori33, F. Landry37, G. Landsberg45, B. Lauer30, A. Leflat14, J. Li46, Q. Z. Li-Demarteau23, J. G. R. Lima3, D. Lincoln23, S. L. Linn21, J. Linnemann37, R. Lipton23, F. Lobkowicz41, S. C. Loken17, A. Lucotte42, L. Lueking23, A. L. Lyon33, A. K. A. Maciel2, R. J. Madaras17, R. Madden21, L. Magaña-Mendoza11, V. Manankov14, S. Mani18, H. S. Mao23,†, R. Markeloff25, T. Marshall27, M. I. Martin23, K. M. Mauritz30, B. May26, A. A. Mayorov15, R. McCarthy42, J. McDonald21, T. McKibben24, J. McKinley37, T. McMahon44, H. L. Melanson23, M. Merkin14, K. W. Merritt23, C. Miao45, H. Miettinen48, A. Mincer40, C. S. Mishra23, N. Mokhov23, N. K. Mondal8, H. E. Montgomery23, P. Mooney4, M. Mostafa1, H. da Motta2, C. Murphy24, F. Nang16, M. Narain23, V. S. Narasimham8, A. Narayanan16, H. A. Neal36, J. P. Negret4, P. Nemethy40, D. Norman47, L. Oesch36, V. Oguri3, E. Oliveira2, E. Oltman17, N. Oshima23, D. Owen37, P. Padley48, A. Para23, Y. M. Park9, R. Partridge45, N. Parua8, M. Paterno41, B. Pawlik12, J. Perkins46, M. Peters22, R. Piegaia1, H. Piekarz21, Y. Pischalnikov29, B. G. Pope37, H. B. Prosper21, S. Protopopescu43, J. Qian36, P. Z. Quintas23, R. Raja23, S. Rajagopalan43, O. Ramirez24, S. Reucroft35, M. Rijssenbeek42, T. Rockwell37, M. Roco23, P. Rubinov26, R. Ruchti28, J. Rutherfoord16, A. Sánchez-Hernández11, A. Santoro2, L. Sawyer32, R. D. Schamberger42, H. Schellman26, J. Sculli40, E. Shabalina14, C. Shaffer21, H. C. Shankar8, R. K. Shivpuri7, M. Shupe16, H. Singh20, J. B. Singh6, V. Sirotenko25, E. Smith44, R. P. Smith23, R. Snihur26, G. R. Snow38, J. Snow44, S. Snyder43, J. Solomon24, M. Sosebee46, N. Sotnikova14, M. Souza2, A. L. Spadafora17, G. Steinbrück44, R. W. Stephens46, M. L. Stevenson17, D. Stewart36, F. Stichelbaut42, D. Stoker19, V. Stolin13, D. A. Stoyanova15, M. Strauss44, K. Streets40, M. Strovink17, A. Sznajder2, P. Tamburello33, J. Tarazi19, M. Tartaglia23, T. L. T. Thomas26, J. Thompson33, T. G. Trippe17, P. M. Tuts39, V. Vaniev15, N. Varelas24, E. W. Varnes17, D. Vititoe16, A. A. Volkov15, A. P. Vorobiev15, H. D. Wahl21, G. Wang21, J. Warchol28, G. Watts45, M. Wayne28, H. Weerts37, A. White46, J. T. White47, J. A. Wightman30, S. Willis25, S. J. Wimpenny20, J. V. D. Wirjawan47, J. Womersley23, E. Won41, D. R. Wood35, Z. Wu23,‡, H. Xu45, R. Yamada23, P. Yamin43, T. Yasuda35, P. Yepes48, K. Yip23, C. Yoshikawa22, S. Youssef21, J. Yu23, Y. Yu10, B. Zhang23,§, Y. Zhou23,**, Z. Zhou30, Z. H. Zhu41, M. Zielinski41, D. Zieminska27, A. Zieminski27, E. G. Zverev14, and A. Zylberstejn5 (D0 Collaboration)
1Universidad de Buenos Aires, Buenos Aires, Argentina 2LAFEX, Centro Brasileiro de Pesquisas Físicas, Rio de Janeiro, Brazil 3Universidade do Estado do Rio de Janeiro, Rio de Janeiro, Brazil 4Universidad de los Andes, Bogotá, Colombia 5DAPNIA/Service de Physique des Particules, CEA, Saclay, France 6Panjab University, Chandigarh, India 7Delhi University, Delhi, India 8Tata Institute of Fundamental Research, Mumbai, India 9Kyungsung University, Pusan, Korea 10Seoul National University, Seoul, Korea 11CINVESTAV, Mexico City, Mexico 12Institute of Nuclear Physics, Kraków, Poland 13Institute for Theoretical and Experimental Physics, Moscow, Russia 14Moscow State University, Moscow, Russia 15Institute for High Energy Physics, Protvino, Russia 16University of Arizona, Tucson, Arizona 85721 17Lawrence Berkeley National Laboratory and University of California, Berkeley, California 94720 18University of California, Davis, California 95616 19University of California, Irvine, California 92697 20University of California, Riverside, California 92521 21Florida State University, Tallahassee, Florida 32306 22University of Hawaii, Honolulu, Hawaii 96822 23Fermi National Accelerator Laboratory, Batavia, Illinois 60510 24University of Illinois at Chicago, Chicago, Illinois 60607 25Northern Illinois University, DeKalb, Illinois 60115 26Northwestern University, Evanston, Illinois 60208 27Indiana University, Bloomington, Indiana 47405 28University of Notre Dame, Notre Dame, Indiana 46556 29Purdue University, West Lafayette, Indiana 47907 30Iowa State University, Ames, Iowa 50011 31University of Kansas, Lawrence, Kansas 66045 32Louisiana Tech University, Ruston, Louisiana 71272 33University of Maryland, College Park, Maryland 20742 34Boston University, Boston, Massachusetts 02215 35Northeastern University, Boston, Massachusetts 02115 36University of Michigan, Ann Arbor, Michigan 48109 37Michigan State University, East Lansing, Michigan 48824 38University of Nebraska, Lincoln, Nebraska 68588 39Columbia University, New York, New York 10027 40New York University, New York, New York 10003 41University of Rochester, Rochester, New York 14627 42State University of New York, Stony Brook, New York 11794 43Brookhaven National Laboratory, Upton, New York 11973 44University of Oklahoma, Norman, Oklahoma 73019 45Brown University, Providence, Rhode Island 02912 46University of Texas, Arlington, Texas 76019 47Texas A&M University, College Station, Texas 77843 48Rice University, Houston, Texas 77005
Received 17 July 1998; published in the issue dated 22 March 1999
We have made a precise measurement of the central inclusive jet cross section at √s = 1.8TeV. The measurement is based on an integrated luminosity of 92pb-1 collected at the Fermilab Tevatron p̅ p Collider with the D0 detector. The cross section, reported as a function of jet transverse energy (ET≥60 GeV) in the pseudorapidity interval |η|≤0.5, is in good agreement with predictions from next-to-leading order quantum chromodynamics.
© 1999 The American Physical Society
URL:
http://link.aps.org/doi/10.1103/PhysRevLett.82.2451
DOI:
10.1103/PhysRevLett.82.2451
*Visitor from Universidad San Francisco de Quito, Quito, Ecuador. †Visitor from IHEP, Beijing, China. ‡ § **
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