Observation Of Rapidity Gaps In (P)Over-Bar-P Collisions At 1.8 Tev

F. Abe, M. Albrow, D. Amidei, C. Anway-Wiese, G. Apollinari,M. Atac, P. Auchincloss,P. Azzi,N. Bacchetta, A. R. Baden, W. Badgett, M. W. Bailey, A. Bamberger,P. De Barbaro, A. Barbaro-Galtieri, V. E. Barnes,B. A. Barnett,P. Bartalini,G. Bauer, T. Baumann,F. Bedeschi, S. Behrends,S. Belforte, G. Bellettini, J. Bellinger,D. Benjamin,J. Benlloch, J. Bensinger, A. Beretvas, J. P. Berge,S. Bertolucci, K. Biery, S. Bhadra,M. Binkley,D. Bisello, R. Blair, C. Blocker,A. Bodek, V. Bolognesi, A. W. Booth, C. Boswell, G. Brandenburg, D. Brown, E. Buckley-Geer, H. S. Budd,G. Busetto, R. G. Wagner, K. L. Byrum,C. Campagnari, M. Campbell, A. Caner, R. Carey, W. Carithers, D. Carlsmith, J. T. Carroll, R. Cashmore,A. Castro, Y. Cen, F. Cervelli, K. Chadwick, J. Chapman,G. Chiarelli, W. Chinowsky, S. Cihangir, A. Byon-Wagner,A. G. Clark,M. Cobal,D. Connor, M. Contreras,J. Cooper, M. Cordelli, D. Crane, J. D. Cunningham,C. Day, F. DeJongh, S. Dell'Agnello,M. Dell'Orso,L. Demortier, B. Denby, P. F. Derwent,T. Devlin,M. Dickson,S. Donati, R. B. Drucker,A. Dunn, K. Einsweiler,J. E. Elias,R. Ely, S. Eno, S. Errede, A. Etchegoyen, B. Farhat,G. J. Feldman,B. Flaugher, G. W. Foster, M. Franklin, M. Frautschi,J. Freeman,H. Frisch, T. Fuess,Y. Fukui, G. Gagliardi, A. F. Garfinkel,A. Gauthier,S. Geer, D. W. Gerdes, P. Giannetti, N. Giokaris, L. Gladney,M. Gold, J. Gonzalez, A. Goshaw, K. Goulianos, H. Grassmann, G. M. Grieco, R. Grindley, C. Grosso-Pilcher, C. Haber,S. R. Hahn, R. Handler, K. Hara, B. Harral, R. M. Harris,S. A. Hauger, J. Hauser, C. Hawk, T. Hessing, R. Hollebeek,L. Holloway,A. Hölscher,S. Hong, G. Houk,P. Hu,B. Hubbard, B. T. Huffman, R. Hughes,P. Hurst, J. Huth, J. Hylen, M. Incagli, T. Ino,H. Iso,H. Jensen, C. P. Jessop, R. P. Johnson, U. Joshi, R. W. Kadel, T. Kamon,S. Kanda,D. A. Kardelis,I. Karliner, E. Kearns, L. Keeble, R. Kephart, P. Kesten, R. M. Keup, H. Keutelian,D. Kim, S. B. Kim, S. H. Kim,Y. K. Kim, L. Kirsch,K. Kondo, J. Konigsberg, K. Kordas,E. Kovacs, M. Krasberg, S. E. Kuhlmann, E. Kuns,A. T. Laasanen,S. Lammel, J. I. Lamoureux,S. Leone,J. D. Lewis, W. Li, P. Limon,M. Lindgren, T. M. Liss,N. Lockyer, M. Loreti, E. H. Low,D. Lucchesi, C. B. Luchini, P. Lukens, P. Maas, K. Maeshima, M. Mangano, J. P. Marriner,M. Mariotti, R. Markeloff, L. A. Markosky,J. A J Matthews, R. Mattingly,P. McIntyre, A. Menzione,E. Meschi,T. Meyer,S. Mikamo, M. Miller,T. Mimashi, S. Miscetti, M. Mishina,S. Miyashita,Y. Morita, S. Moulding, J. Mueller,A. Mukherjee, T. Muller, L. F. Nakae, I. Nakano, C. Nelson,D. Neuberger, C. Newman-Holmes, J. S T Ng, M. Ninomiya, L. Nodulman,S. Ogawa, C. Pagliarone, R. Paoletti,V. Papadimitriou, A. Para, E. Pare,Sung Keun Park,J. Patrick, G. Pauletta, L. Pescara, T. J. Phillips, A. G. Piacentino,R. Plunkett, L. Pondrom,J. Proudfoot, F. Ptohos, G. Punzi, D. Quarrie,K. Ragan, G. Redlinger,J. Rhoades,M. Roach, F. Rimondi, L. Ristori,W. J. Robertson,T. Rodrigo, T. Rohaly, A. Roodman,W. K. Sakumoto, A. Sansoni, R. D. Sard, A. Savoy-Navarro,V. Scarpine, P. Schlabach, E. E. Schmidt,O. Schneider, M. H. Schub, R. Schwitters, G. Sciacca, A. Scribano,S. Segler, S. Seidel, Y. Seiya, G. Sganos, M. Shapiro, N. M. Shaw, M. Sheaff, M. Shochet, J. Siegrist,A. Sill, P. Sinervo, J. Skarha, K. Sliwa,D. A. Smith, F. D. Snider,L. Song,T. Song, M. Spahn,P. Sphicas,A. Spies,R. St Denis, L. Stanco, A. Stefanini,G. Sullivan, K. Sumorok, R. L. Swartz,M. Takano, K. Takikawa, S. Tarem, F. Tartarelli, S. Tether,D. Theriot, M. Timko,P. Tipton, S. Tkaczyk, A. Tollestrup, J. Tonnison, W. Trischuk,Y. Tsay,J. Tseng, N. Turini,F. Ukegawa,D. Underwood, S. Vejcik,R. Vidal, R. L. Wagner, N. Wainer, R. C. Walker, J. Walsh, A. Warburton, G. Watts, T. Watts, R. Webb, C. Wendt,H. Wenzel,W. C. Wester, T. Westhusing, S. N. White, A. B. Wicklund, E. Wicklund,H. H. Williams, B. L. Winer, J. Wolinski, D. Y. Wu, X. Wu, J. Wyss, A. Yagil, W. Yao, K. Yasuoka, Y. Ye, G. P. Yeh, J. Yoh, M. Yokoyama, J. C. Yun, A. Zanetti, F. Zetti, S. Zhang, W. Zhang,S. Zucchelli

PHYSICAL REVIEW LETTERS(1995)

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摘要
In $p\overline{p}$ collisions at $\sqrt{s}=1.8$ TeV we find jet events with a rapidity gap topology. The number of hadrons in the rapidity interval $\ensuremath{\Delta}{\ensuremath{\eta}}_{D}$ between leading-jet cones was sampled by charged tracks with ${P}_{T}g400$ MeV/c. We find excess trackless events beyond that expected in a smooth multiplicity distribution. In a control region outside $\ensuremath{\Delta}{\ensuremath{\eta}}_{D}$ we see no excess. For $\ensuremath{\Delta}{\ensuremath{\eta}}_{D}g0.8$, the fraction of excess trackless events, consistent with estimates based on exchange of color-singlet digluons, is $R(\mathrm{gap})=\frac{{\ensuremath{\sigma}}_{\mathrm{jet}}(\mathrm{gap})}{{\ensuremath{\sigma}}_{\mathrm{jet}}}=0.0085\ifmmode\pm\else\textpm\fi{}{0.0012(\mathrm{stat})}_{\ensuremath{-}0.0012}^{+0.0024}(\mathrm{syst})$.
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关键词
Energy (signal processing),Rapidity,Multiplicity (mathematics),Hadron,Elementary particle,Boson,Quantum chromodynamics,Gluon,Particle physics,Nuclear physics,Physics
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