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Charged multiplicities in Z decays into u, d, and s Quarks
Author(s) -
G. Abbiendi
Publication year - 2001
Publication title -
the european physical journal c
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.938
H-Index - 198
eISSN - 1434-6052
pISSN - 1434-6044
DOI - 10.1007/s100520100611
Subject(s) - physics , particle physics , quark , hadron , energy (signal processing) , flavour , boson , nuclear physics , quantum mechanics
About 4.4 million hadronic decays of Z bosons, recorded by the OPAL detector at LEP at a centre-of-mass energy of around √ s = 91.2GeV, are used to determine the mean charged particle multiplicities for the three light quark flavours. Events from primary u, d, and s quarks are tagged by selecting characteristic particles which carry a large fraction of the beam energy. The charged particle multiplicities are measured in the hemispheres opposite to these particles. An unfolding procedure is applied to obtain these multiplicities for each primary light quark flavour. This yields h nui = 17.77 ± 0.51+0.86 −1.20, h ndi = 21.44 ± 0.63 +1.46 −1.17, h nsi = 20.02 ± 0.13 +0.39 −0.37, where statistical and systematic errors are given. The results for h nui and h ndi are almost fully statistically anti-correlated. Within the errors the result is consistent with the flavour independence of the strong interaction for the particle multiplicities in events from the light up, down, and strange quarks.

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