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Ensemble mean $\bf p_t$ vs charged-hadron multiplicities in high energy nuclear collisions

High Energy Physics - Phenomenology 2015-06-19 v1 Nuclear Theory

Abstract

Measurements of event-ensemble mean transverse momentum pt\langle p_t \rangle vs charged-hadron multiplicity nchn_{ch} for ptp_t spectra from 5 TeV p-Pb and 2.76 TeV Pb-Pb collisions and from p-p collisions for several energies have been reported recently. While in all cases pt\langle p_t \rangle increases monotonically with nchn_{ch} the rate of increase is very different from system to system. Comparisons with several theory Monte Carlos reveal substantial disagreements and lead to considerable uncertainty on how to interpret the pt\langle p_t \rangle data. In the present study we develop a two-component (soft+hard) model (TCM) of ptp_t production in high energy nuclear collisions and apply it to the pt\langle p_t \rangle data. The soft component is assumed to be a universal feature of high energy collisions independent of A-B system or energy. The hard-component model is based on the observation that dijet production in p-p collisions does not satisfy the eikonal approximation but does so in A-A collisions. Hard-component properties are determined from previous measurements of hadron spectrum hard components, jet spectra and fragmentation functions. The TCM describes the p-p and Pb-Pb pt\langle p_t \rangle data accurately, within data uncertainties, and the p-Pb data appear to transition smoothly from p-p to A-A nchn_{ch} trends.

Keywords

Cite

@article{arxiv.1403.6494,
  title  = {Ensemble mean $\bf p_t$ vs charged-hadron multiplicities in high energy nuclear collisions},
  author = {Thomas A. Trainor},
  journal= {arXiv preprint arXiv:1403.6494},
  year   = {2015}
}

Comments

11 pages, 8 figures