English

Do p+p Collisions Flow at RHIC? Understanding One-Particle Distributions, Multiplicity Evolution, and Conservation Laws

Nuclear Theory 2009-11-18 v2

Abstract

Collective, explosive flow in central heavy ion collisions manifests itself in the mass dependence of pTp_T distributions and femtoscopic length scales, measured in the soft sector (pT1p_T\lesssim 1 GeV/c). Measured pTp_T distributions from proton-proton collisions differ significantly from those from heavy ion collisions. This has been taken as evidence that p+p collisions generate little collective flow, a conclusion in line with naive expectations. We point out possible hazards of ignoring phase-space restrictions due to conservation laws when comparing high- and low-multiplicity final states. Already in two-particle correlation functions, we see clear signals of such phase-space restrictions in low-multiplicity collisions at RHIC. We discuss how these same effects, then, {\it must} appear in the single particle spectra. We argue that the effects of energy and momentum conservation actually dominate the observed systematics, and that p+pp+p collisions may be much more similar to heavy ion collisions than generally thought.

Keywords

Cite

@article{arxiv.0907.3870,
  title  = {Do p+p Collisions Flow at RHIC? Understanding One-Particle Distributions, Multiplicity Evolution, and Conservation Laws},
  author = {Zbigniew Chajȩcki and Mike Lisa},
  journal= {arXiv preprint arXiv:0907.3870},
  year   = {2009}
}

Comments

4 pages, 3 figures - To appear in the conference proceedings for Quark Matter 2009, March 30 - April 4, Knoxville, Tennessee