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Evolution of average multiplicities of quark and gluon jets
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Evolution of average multiplicities of quark and gluon jets
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The energy evolution of average multiplicities of quark and gluon jets is studied in perturbative QCD. Higher order (3NLO) terms in the perturbative expansion of equations for the generating functions are found. First and second derivatives of average multiplicities are calculated. The mean multiplicity of gluon jets is larger than that of quark jets and evolves more rapidly with energy. It is shown which quantities are most sensitive to higher order perturbative and nonperturbative corrections. We define the energy regions where the corrections to different quantities are important. The latest experimental data are discussed.
Forward citations
Cited by 2 Pith papers
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Measurement of $\Xi^-/\bar{\Xi}^{+}$ production in jets from $Z$ boson decays with the DELPHI open data
First measurement of Xi-/Xi+ production in energy-ranked jets at LEP yields R_g/q = 1.21 ± 0.32, consistent with JETSET and previous strange-hadron results.
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Measurement of $\Xi^-/\bar{\Xi}^{+}$ production in jets from $Z$ boson decays with the DELPHI open data
The first measurement of the gluon-to-quark production ratio for Ξ−/Ξ+ baryons in Z decays gives R=1.21±0.18±0.26, consistent with JETSET and with unity.
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