학술논문

Hadronic energy distributions in deep-inelastic electron-proton scattering
Document Type
Article
Author
Derrick, M.Krakauer, D.Magill, S.Musgrave, B.Repond, J.Repond, S.Stanek, R.Talaga, R. L.Thron, J.Arzarello, F.Ayad, R.Bari, G.Basile, M.Bellagamba, L.Boscherini, D.Bruni, A.Bruni, G.Bruni, P.Cara Romeo, G.Castellini, G.Chiarini, M.Cifarelli, L.Cindolo, F.Ciralli, F.Contin, A.D'Auria, S.Del Papa, C.Frasconi, F.Giusti, P.Iacobucci, G.Laurenti, G.Levi, G.Lin, Q.Lisowski, B.Maccarrone, G.Margotti, A.Massam, T.Nania, F.Nemoz, C.Palmonari, F.Sartorelli, G.Timellini, R.Zamora Garcia, Y.Zichichi, A.Bargende, A.Crittenden, J.Dabbous, H.Desch, K.Diekmann, B.Doeker, T.Geerts, M.Geitz, G.Hartmann, H.Haun, D.Heinloth, K.Hilger, E.Jakob, H. -P.Kramarczyk, S.Kückes, M.Mass, A.Mengel, S.Mollen, J.Monaldi, D.Müsch, H.Paul, E.Schattevoy, R.Schneider, J. -L.Schramm, D.Wedemeyer, R.Cassidy, A.Cussans, D. G.Dyce, N.Foster, B.Gilmore, R.Heath, G. P.Heath, H. F.Lancaster, M.Llewellyn, T. J.Malos, J.Morgado, C. J. S.Tapper, R. J.Wilson, S. S.Yoshida, R.Rau, R. R.Arneodo, M.Barillari, T.Schioppa, M.Susinno, G.Bernstein, A.Caldwell, A.Gialas, I.Parsons, J. A.Ritz, S.Sciulli, F.Straub, P. B.Wai, L.Yang, S.Chwastowski, J.Dwurzźny, A.Eskreys, A.Jakubowski, Z.Niziol, B.Piotrzkowski, K.Zachara, M.Zawiejski, L.Bednarek, B.Borzemski, P.Eskreys, K.Jeleń, K.Kisielewska, D.Kowalski, T.Rulikowska-Zarębska, E.Suszycki, L.Zając, J.Kędzierski, T.Kotański, A.Przybycień, M.Bauerdick, L. A. T.Behrens, U.Bienlein, J. K.Böttcher, S.Coldewey, C.Dannemann, A.Drews, G.Erhard, P.Flasiński, M.Fleck, I.Gläser, R.Göttlicher, P.Gutjahr, B.Haas, T.Hagge, L.Hain, W.Hasell, D.Hultschig, H.Jahnen, G.Joos, P.Kasemann, M.Klanner, R.Koch, W.Köpke, L.Kötz, U.Kowalski, H.Krüger, J.Labs, J.Ladage, A.Löhr, B.Löwe, M.Lüke, D.Mainusch, J.Manczak, O.Momayezi, M.Ng, J. S. T.Nickel, S.Notz, D.Pösnecker, K. -U.Rohde, M.Roldán, J.Ros, E.Schneekloth, U.Schroeder, J.Schulz, W.Selonke, F.Stiliaris, E.Tscheslog, E.Tsurugai, T.Vogel, W.Wolf, G.Youngman, C.Grabosch, H. J.Leich, A.Meyer, A.Rethfeldt, C.Schlenstedt, S.Barbagli, G.Francescato, A.Nuti, M.Pelfer, P.Anzivino, G.Casaccia, R.De Pasquale, S.Qian, S.Votano, L.Bamberger, A.Freidhof, A.Kröger, W.Poser, T.Söldner-Rembold, S.Theisen, G.Trefzger, T.Brook, N. H.Bussey, P. J.Doyle, A. T.Forbes, J. R.Jamieson, V. A.Raine, C.Saxon, D. H.Brückmann, H.Gloth, G.Holm, U.Kammerlocher, H.Krebs, B.Neumann, T.Wick, K.Fürtjes, A.Lohrmann, E.Milewski, J.Nakahata, M.Pavel, N.Poelz, G.Schott, W.Terron, J.Zetsche, F.Bacon, T. C.Beuselinck, R.Butterworth, I.Gallo, E.Harris, V. L.Miller, D. B.Prinias, A.Sedgbeer, J. K.Vorvolakos, A.Whitfield, A.Bienz, T.Kreutzmann, H.Mallik, U.McCliment, E.Roco, M.Wang, M. Z.Cloth, P.Filges, D.An, S. H.Hong, S. M.Kim, C. O.Kim, T. Y.Nam, S. W.Park, S. K.Suh, M. H.Yon, S. H.Chen, L.Imlay, R.Kartik, S.Kim, H. -J.McNeil, R. R.Metcalf, W.Barreiro, F.Cases, G.Hervás, L.Labarga, L.del Peso, J.de Trocóniz, J. F.Ikraiam, F.Mayer, J. K.Smith, G. R.Corriveau, F.Gilkinson, D. J.Hanna, D. S.Hartmann, J.Hung, L. W.Lim, J. N.Meijer Drees, R.Mitchell, J. W.Patel, P. M.Sinclair, L. E.Stairs, D. G.St.Laurent, M.Ullmann, R.Bashindzhagyan, G. L.Ermolov, P. F.Gladilin, L. K.Golubkov, Y. A.Kuzmin, V. A.Kuznetsov, E. N.Savin, A. A.Voronin, A. G.Notov, N. P.Bentvelsen, S.Botje, M.Dake, A.Engelen, J.de Jong, P.de Kamps, M.Kooijman, P.Kruse, A.van der Lugt, H.O'Dell, V.Tenner, A.Tiecke, H.Uijterwaal, H.Vreeswijk, M.Wiggers, L.de Wolf, E.van Woudenberg, R.Bylsma, B.Durkin, L. S.Honscheid, K.Li, C.Ling, T. Y.McLean, K. W.Murray, W. N.Park, I. H.Romanowski, T. A.Seidlein, R.Blair, G. A.Byrne, A.Cashmore, R. J.Cooper-Sarkar, A. M.Devenish, R. C. E.Gingrich, D. M.Hallam-Baker, P. M.Harnew, N.Khatri, T.Long, K. R.Luffman, P.McArthur, I.Morawitz, P.Nash, J.Smith, S. J. P.Roocroft, N. C.Wilson, F. F.Abbiendi, G.Brugnera, R.Carlin, R.Dal Corso, F.De Giorgi, M.Dosselli, U.Gasparini, F.Limentani, S.Morandin, M.Posocco, M.Stanco, L.Stroili, R.Voci, C.Butterworth, J. M.Bulmahn, J.Feild, G.Oh, B. Y.Whitmore, J.Contino, U.D'Agostini, G.Guida, M.Iori, M.Mari, S. M.Marini, G.Mattioli, M.Nigro, A.Hart, J. C.McCubbin, N. A.Prytz, K.Shah, T. P.Short, T. L.Barberis, E.Cartiglia, N.Heusch, C.Hubbard, B.Leslie, J.Lockman, W.O'Shaughnessy, K.Sadrozinski, H. F.Seiden, A.Zer-Zion, D.Badura, E.Biltzinger, J.Seifert, R. J.Walenta, A. H.Zech, G.Dagan, S.Levy, A.Hasegawa, T.Hazumi, M.Ishii, T.Kasai, S.Kuze, M.Nagasawa, Y.Nakao, M.Okuno, H.Tokushuku, K.Watanabe, T.Yamada, S.Chiba, M.Hamatsu, R.Hirose, T.Kitamura, S.Nagayama, S.Nakamitsu, Y.Cirio, R.Costa, M.Ferrero, M. I.Lamberti, L.Maselli, S.Peroni, C.Solano, A.Staiano, A.Dardo, M.Bailey, D. C.Bandyopadhyay, D.Benard, F.Bhadra, S.Brkic, M.Burow, B. D.Chlebana, F. S.Crombie, M. B.Hartner, G. F.Levman, G. M.Martin, J. F.Orr, R. S.Prentice, J. D.Sampson, C. R.Stairs, G. G.Teuscher, R. J.Yoon, T. -S.Bullock, F. W.Catterall, C. D.Giddings, J. C.Jones, T. W.Khan, A. M.Lane, J. B.Makkar, P. L.Shaw, D.Shulman, J.Blankenship, K.Kochocki, J.Lu, B.Mo, L. W.Charchula, K.Ciborowski, J.Gajewski, J.Grzelak, G.Kasprzak, M.Krzyżanowski, M.Muchorowski, K.Nowak, R. J.Pawlak, J. M.Stopczyński, A.Tymieniecka, T.Walczak, R.Wróblewski, A. K.Zakrzewski, J. A.Żarnecki, A. F.Adamus, M.Abramowicz, H.Eisenberg, Y.Glasman, C.Karshon, U.Montag, A.Revel, D.Shapira, A.Foudas, C.Fordham, C.Loveless, R. J.Goussiou, A.Ali, I.Behrens, B.Dasu, S.Reeder, D. D.Smith, W. H.Silverstein, S.Frisken, W. R.Furutani, K. M.Iga, Y.
Source
Zeitschrift für Physik C Particles and Fields; June 1993, Vol. 59 Issue: 2 p231-242, 12p
Subject
Language
ISSN
01709739; 14315858
Abstract
This paper presents energy distributions of the hadronic system produced in neutral-current electron-proton deep-inelastic scattering at a centre of mass energy of 296 GeV. Comparison of the results with QCD Monte Carlo models shows that QCD radiation has a strong influence on the characteristics of the final state. The data are reasonably reproduced by the Lund model based on a matrix element calculation in first order ofas, followed by appropriate parton showers, as well as by the colour dipole model. The HERWIG parton shower model also gives a reasonable representation of the data. Neither the first order matrix elements alone nor the Lund parton shower model, without the matrix element calculation, reproduce the data.