论文标题

在高能核碰撞时进行的两粒子相关,外围管模型重新审视

Two-particle correlations at high-energy nuclear collisions, peripheral-tube model revisited

论文作者

Hama, Yogiro, Kodama, Takeshi, Qian, Wei-Liang

论文摘要

在本文中,我们介绍了外围管模型,该模型已开发出来,以对高能核碰撞中的两个粒子相关性中所谓的脊效应进行直观且动态的描述。从事件发生的事件波动开始,我们首先显示了脊 +肩部在所谓的两个粒子长距离相关性中的出现,从而再现了数据。与各向异性流的起源的常用几何形状相反,我们可以在初始条件下以高能量密度的外围管的存在动态解释这种结构。这些试管猛烈地爆炸并偏转了来自热物质内部的近径向流,进而在单粒子分布中产生了两ridge的结构,大约有两个单元在Asimuth中打开。计算两粒子相关性时,这将导致特征性的三ridge结构,其近距离脊和两个对称的下远边脊或肩膀。在这种动态描述中,自然出现了几种各向异性流,即产生山脊 +肩部结构所必需的。使用这个简单的想法,我们可以理解几种相关现象,例如中心性依赖性和触发角度依赖性。

In this paper, we give an account of the peripheral-tube model, which has been developed to give an intuitive and dynamical description of the so-called ridge effect in two-particle correlations in high-energy nuclear collisions. Starting from a realistic event-by-event fluctuating hydrodynamical model calculation, we first show the emergence of ridge + shoulders in the so-called two-particle long-range correlations, reproducing the data. In contrast to the commonly used geometric picture of the origin of the anisotropic flow, we can explain such a structure dynamically in terms of the presence of high energy-density peripheral tubes in the initial conditions. These tubes violently explode and deflect the near radial flow coming from the interior of the hot matter, which in turn produces a two-ridge structure in single-particle distribution, with approximately two units opening in azimuth. When computing the two-particle correlation, this will result in characteristic three-ridge structure, with a high near-side ridge and two symmetric lower away-side ridges or shoulders. Several anisotropic flows, necessary to producing ridge + shoulder structure, appear naturally in this dynamical description. Using this simple idea, we can understand several related phenomena, such as centrality dependence and trigger-angle dependence.

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