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Centrality Dependence of Multiplicity Fluctuations from a Hydrodynamical Approach

机译:来自流体动力学方法的多重波动的中心依赖性

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As one of the possible signals for the whereabouts of the critical point on the QCD phase diagram, recently, the multiplicity fluctuations in heavy-ion collisions have aroused much attention. It is a crucial observation of the Beam Energy Scan program of the Relativistic Heavy Ion Collider. In this work, we investigate the centrality dependence of the multiplicity fluctuations regarding the recent measurements from STAR Collaboration. By employing a hydrodynamical approach, the present study is dedicated to the noncritical aspects of the phenomenon. To be specific, in addition to the thermal fluctuations, finite volume corrections, and resonance decay at the freeze-out surface, the model is focused on the properties of the hydrodynamic expansion of the system and the event-by-event initial fluctuations. It is understood that the real signal of the critical point can only be obtained after appropriately subtracting the background; the latter is investigated in the present work. Besides the experimental data, our results are also compared to those of the hadronic resonance gas, as well as the transport models.
机译:作为QCD相图上临界点的下落的可能信号之一,最近,重离子碰撞中的多重波动引起了很多关注。这是对相对论重离子撞机的光束能量扫描程序的关键观察。在这项工作中,我们研究了多个波动对最近的星际协作测量的中心依赖性。通过采用流体动力学方法,本研究专用于现象的非关键方面。具体而言,除了热波动,有限体积校正和冻结表面的共振衰减之外,该模型的重点是系统的流体动力学扩展的性质和逐次初始波动。应当理解,临界点的实际信号只能在适当减去背景之后获得;后者在目前的工作中进行了调查。除了实验数据之外,我们的结果也与屈光度共振气体以及运输模型相比。

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