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Charged-Particle Multiplicity in Proton-Proton Collisions

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arxiv 0912.0023 v2 pith:773GXBY5 submitted 2009-11-30 hep-ex nucl-ex

classification hep-exnucl-ex
keywords distributionsmultiplicitycollisionssqrtcharged-particlepbarbinomialdensities
verification ladder T0 review T1 audit T2 compute T3 formal
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This article summarizes and critically reviews measurements of charged-particle multiplicity distributions and pseudorapidity densities in p+p(pbar) collisions between sqrt(s) = 23.6 GeV and sqrt(s) = 1.8 TeV. Related theoretical concepts are briefly introduced. Moments of multiplicity distributions are presented as a function of sqrt(s). Feynman scaling, KNO scaling, as well as the description of multiplicity distributions with a single negative binomial distribution and with combinations of two or more negative binomial distributions are discussed. Moreover, similarities between the energy dependence of charged-particle multiplicities in p+p(pbar) and e+e- collisions are studied. Finally, various predictions for pseudorapidity densities, average multiplicities in full phase space, and multiplicity distributions of charged particles in p+p(pbar) collisions at the LHC energies of sqrt(s) = 7 TeV, 10 TeV, and 14 TeV are summarized and compared.

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  1. Precise determination of pomeron intercept via scaling entropy analysis

    hep-ph 2024-12 conditional novelty 5.0 of 10

    Measuring the entropy of final-state hadron multiplicities in H1 data gives a Pomeron intercept of 0.322 ± 0.007, consistent with the value from inclusive DIS cross-section scaling.

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