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Abstract:
The 3-jet events from hadronic Z0 decay is studied using Monte-Carlo simulation. Quark and Gluon jets are identified through the b-tag method. A new physical quantity——hardness is defined, and the hardness distributions of quark and gluon jets are calculated. The dependence of the average multiplicity and average transverse momentum on hardness as well as the multiplicity and transverse momentum distributions in a certain hardness range in the quark and gluon jets are calculated respectively, and compared. It is found that the properties of quark and gluon jets are considerably different in these respects. The properties of quark jets are almost independent on hardness, while those of gluon jets have strong correlation with hardness. When Hd>10GeV the average multiplicity and average tranverse momentum of gluon jets are higher than those of quark jets; but when H-d<6GeV the results are reversed. This indicates that the conclusion on gluon jets being “fatter” than quark jets is valid only for hard gluons.
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