The transverse-momenta distributions in high-energy $pp$ collisions -- A statistical-mechanical approach
Abstract
We analyze LHC available data measuring the distribution probability of transverse momenta~ in proton-proton collisions at (CMS, ALICE, ATLAS) and (CMS, ATLAS). A remarkably good fitting can be obtained, along fourteen decades in magnitude, by phenomenologically using -statistics for a {\it single} particle of a two-dimensional relativistic ideal gas. The parameters that have been obtained by assuming at mid-rapidity are, in all cases, and (which satisfactorily compares with the pion mass). This fact suggests the approximate validity of a "no-hair" statistical-mechanical description of the hard-scattering hadron-production process in which the detailed mechanisms of parton scattering, parton cascades, parton fragmentation, running coupling and other information can be subsumed under the stochastic dynamics in the lowest-order description. In addition to that basic structure, a finer analysis of the data suggests a small oscillatory structure on top of the leading -exponential. The physical origin of such intriguing oscillatory behavior remains elusive, though it could be related to some sort of fractality or scale-invariance within the system.
Keywords
Cite
@article{arxiv.1409.3278,
title = {The transverse-momenta distributions in high-energy $pp$ collisions -- A statistical-mechanical approach},
author = {Leonardo J. L. Cirto and Constantino Tsallis and Cheuk-Yin Wong and Grzegorz Wilk},
journal= {arXiv preprint arXiv:1409.3278},
year = {2014}
}
Comments
4 pages, 1 figure