Autor: |
David Ja Cockerill, L. Rosselet, J. E. Hooper, R. Møller, G. Kesseler, W. J. Willis, H. Brody, Michael Albrow, H. J. Hilke, T. W. Ludlam, Howard Gordon, S. Dagan, R. H. Schindler, T. P. A. Åkesson, T. Jensen, Göran Jarlskog, B. Schistad, J. v. d. Lans, W. Witzeling, A. Hallgren, Richard Batley, W. Frati, N. A. McCubbin, A. Di Ciaccio, D. Lissauer, W. M. Evans, I. Stumer, C. L. Woody, E. Dahl-Jensen, K. H. Hansen, P. W. Jeffreys, B. Lörstad, T. Killian, H. Bøggild, Sherman Frankel, P. Frandsen, W. R. Molzon, M. Winik, L. H. Olsen, E. Vella, I. Dahl-Jensen, Ulf Mjörnmark, V. Burkert, S. Almehed, Anders Nilsson, G. Damgaard, E. Rosso, O. Botner, Borge Svane Nielsen, Yona Oren, B. W. Heck, Odette Benary, C.W. Fabjan |
Rok vydání: |
1982 |
Předmět: |
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Zdroj: |
Physics Letters B. 118:193-198 |
ISSN: |
0370-2693 |
DOI: |
10.1016/0370-2693(82)90627-x |
Popis: |
The detailed shape of events triggered by a 1.7 sr hadron calorimeter is studied using charged track information in the Axial Field Spectrometer at the CERN ISR. With increasing transverse energy (ET) a large fraction of the events are seen to have a limited transverse momentum relative to the trigger direction. A comparison of the circularity of the events with a prediction of a QCD-motivated Monte Carlo model shows that at high ET the events originate predominantly from two-constituent scattering. |
Databáze: |
OpenAIRE |
Externí odkaz: |
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