Charge conservation and higher moments of charge fluctuations

S. Pratt, R. Steinhorst
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引用次数: 1

Abstract

Higher moments of distributions of net charge and baryon number in heavy-ion collisions have been proposed as signals of fundamental QCD phase transitions. In order to better understand background processes for these observables, models are presented which enable one to gauge the effects of local charge conservation, decays of resonances and clusters, Bose symmetrization, and volume fluctuations. Monte Carlo methods for generating samplings of particles consistent with local charge conservation are presented, and are followed by a review of simple analytic models involving a single type of charge with a constant experimental efficiency. The main model consists of thermal emission superimposed onto a simple parameterization of collective flow, known as a blast-wave, with emission being consistent with individual canonical ensembles. The spatial extent of local charge conservation is parameterized by the size and extent over which charge is conserved. The sensitivity of third and fourth order moments, skewness and kurtosis, to these parameters, and to beam energy and baryon density is explored. Comparisons with STAR data show that a significant part of the observed non-Poissonian fluctuations in net-proton fluctuations are explained by charge and baryon-number conservation, but that measurements of the STAR collaboration for fluctuations of net electric charge significantly differ from expectations of the models presented here.
电荷守恒和更高的电荷波动矩
重离子碰撞中净电荷和重子数分布的高矩被认为是基本QCD相变的信号。为了更好地理解这些可观测物的背景过程,提出了一些模型,使人们能够测量局部电荷守恒、共振和团簇的衰减、玻色对称和体积波动的影响。本文介绍了蒙特卡罗方法产生符合局部电荷守恒的粒子样本,然后回顾了具有恒定实验效率的单一类型电荷的简单解析模型。主要模型包括热发射叠加到一个简单的集体流参数化上,即爆炸波,其发射与单个正则系综一致。局部电荷守恒的空间范围由电荷守恒的大小和范围参数化。探讨了三阶和四阶矩、偏度和峰度对这些参数的敏感性,以及对束流能量和重子密度的敏感性。与STAR数据的比较表明,观测到的净质子波动的非泊松波动的很大一部分是由电荷和重子数守恒来解释的,但是STAR合作对净电荷波动的测量结果与这里提出的模型的预期有很大不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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