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Observation of planar three-jet events in e+e− annihilation and evidence for gluon bremsstrahlung

Authors :
Bartel, W.
Canzler, T.
O'Neill, L. H.
Olsson, J.
Steffen, P.
Yen, W. L.
Elsen, E.
Helm, M.
Petersen, A.
Warming, P.
Weber, G.
Drumm, H.
Cords, D.
Heintze, J.
Heinzelmann, G.
Heuer, R. D.
von Krogh, J.
Lennert, P.
Matsumura, H.
Nozaki, T.
Rieseberg, H.
Wagner, A.
Darvill, D. C.
Dittmann, P.
Foster, F.
Hughes, G.
Wriedt, H.
Allison, J.
Armitage, J.
Duerdoth, I.
Hassard, J.
Loebinger, F.
King, B.
Macbeth, A.
Eichler, R.
Mills, H.
Murphy, P. G.
Prosper, H.
Stephens, K.
Clarke, D.
Goddard, M. C.
Hedgecock, R.
Marshall, R.
Pearce, G. F.
Imori, M.
Felst, R.
Kobayashi, T.
Komamiya, S.
Koshiba, M.
Minowa, M.
Orito, S.
Sato, A.
Suda, T.
Takeda, H.
Totsuka, Y.
Watanabe, Y.
Haidt, D.
Yamada, S.
Yanagisawa, C.
JADE Collaboration
Kawabata, S.
Krehbiel, H.
Naroska, B.
Source :
Physics letters / B 91(1), 142-147 (1980). doi:10.1016/0370-2693(80)90680-2
Publication Year :
1980
Publisher :
Elsevier BV, 1980.

Abstract

Topological distributions of charged and neutral hadrons from the reaction e+e− → multihadrons are studied at √s of about 30 GeV. An excess of planar events is observed at a rate which cannot be explained by statistical fluctuations in the standard two-jet process. The planar events, mostly consisting of a slim jet on one side and a broader jet on the other, are shown actually to possess three-jet structure by demonstrating that the broader jet itself consists of two collinear jets in its own rest system. Detailed agreement between data and predictions is obtained if the process e + e − →q q g is taken into account. This strongly suggests gluon bremsstrahlung as the origin of the planar three-jet events. By comparison of the data with the qqg-model we obtain a value for the strong coupling constant of αS(q2 = 0.17 ± 0.04.

Details

ISSN :
03702693
Volume :
91
Database :
OpenAIRE
Journal :
Physics Letters B
Accession number :
edsair.doi.dedup.....d699f4cb58e106a171c7be1a2b9cb833
Full Text :
https://doi.org/10.1016/0370-2693(80)90680-2