The azimuth quadrupole in nuclear collisions
Abstract
We present measurements of both -integral and -differential azimuth quadrupole components of two-particle correlations on azimuth () and pseudorapidity () for unidentified hadrons in Au-Au collisions at and 200 GeV. The azimuth quadrupole component is distinguished from -localized same-side correlations by taking advantage of the dependence. The quadrupole component is related to conventional measures. Both -integral and -differential results are presented as functions of Au-Au centrality. We observe simple universal energy and centrality trends for the -integral quadrupole component. -differential results are constructed using marginal distributions on . These results can be transformed to reveal quadrupole spectra that are nearly independent of centrality. A parametrization of the -differential quadrupole shows a simple dependence that can be factorized from the centrality and collision energy dependence above 0.75 GeV/c.
Cite
@article{arxiv.1011.5254,
title = {The azimuth quadrupole in nuclear collisions},
author = {David Kettler},
journal= {arXiv preprint arXiv:1011.5254},
year = {2019}
}
Comments
Proceedings from Workshop on Critical Examination of RHIC Paradigms