论文标题

临界点波动:有限规模和全球电荷保护效果

Critical point fluctuations: Finite size and global charge conservation effects

论文作者

Poberezhnyuk, Roman V., Savchuk, Oleh, Gorenstein, Mark I., Vovchenko, Volodymyr, Taradiy, Kirill, Begun, Viktor V., Satarov, Leonid, Steinheimer, Jan, Stoecker, Horst

论文摘要

我们研究有限系统大小和全球电荷保护对临界点附近热波动的同时影响。为此,我们考虑了一个有限的相互作用系统,该系统将粒子与有限的储层(恒温器)交换,其中包括一个与常规和宏伟的规范合奏不同的统计合奏。作为一个特定示例,使用了范德华模型。当系统大小与储层相当时,全球电荷保护效应强烈影响颗粒数分布的累积物。如果系统大小足够大,可以捕获与相互作用相关的所有物理,则可以在最近开发的亚元素接受方法中准确描述和校正分析的全局电荷保护效果。当相关长度由于临界点的邻近或系统足够小以与单个粒子的特征值相媲美时,有限尺寸效应就开始起重要作用。我们在重型离子碰撞中的波动测量的背景下讨论了我们的结果。

We investigate simultaneous effects of finite system size and global charge conservation on thermal fluctuations in the vicinity of a critical point. For that we consider a finite interacting system which exchanges particles with a finite reservoir (thermostat), comprising a statistical ensemble that is distinct from the common canonical and grand canonical ensembles. As a particular example the van der Waals model is used. The global charge conservation effects strongly influence the cumulants of particle number distribution when the system size is comparable to that of the reservoir. If the system size is large enough to capture all the physics associated with the interactions, the global charge conservation effects can be accurately described and corrected for analytically, within a recently developed subensemble acceptance method. The finite size effects start to play a significant role when the correlation length grows large due to proximity of the critical point or when the system is small enough to be comparable to an eigenvolume of an individual particle. We discuss our results in the context of fluctuation measurements in heavy-ion collisions.

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