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arXiv:0903.5114·v1·High Energy Physics — Phenomenology

The evolution of minimum-bias parton fragmentation in nuclear collisions

Thomas A. Trainor🇺🇸

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Abstract

Hard components of spectra can be identified with minimum-bias parton fragmentation in nuclear collisions. Minimum-bias fragment distributions (FDs) can be calculated by folding a power-law parton energy spectrum with parametrized fragmentation functions (FFs) derived from - and p-p̄ collisions. Alterations to FFs due to parton "energy loss" or "medium modification" in Au-Au collisions are modeled by adjusting FF parametrizations consistent with rescaling QCD splitting functions. The parton spectrum is constrained by comparison with a p-p spectrum hard component. The reference for all nuclear collisions is the FD derived from in-vacuum - FFs. Relative to that reference the hard component for p-p and peripheral Au-Au collisions is found to be {\em strongly suppressed} for smaller fragment momenta. At a specific point on centrality the Au-Au hard component transitions to enhancement at smaller momenta and suppression at larger momenta, consistent with FDs derived from medium-modified - FFs.

Comments: 12 pages, 8 figures, Proceedings of "High-pt Physics at LHC-09," Feb. 4-7, 2009, Prague, CZ