论文标题

具有详细横向轮廓的系统中的流体动力

Hydrodynamization in systems with detailed transverse profiles

论文作者

Kurkela, Aleksi, Taghavi, Seyed Farid, Wiedemann, Urs Achim, Wu, Bin

论文摘要

核核,质子核和高质子质子质子碰撞中流体样行为的观察激发了对不同测量方法如何接近其流体动力学极限的系统研究。我们已经开发了数值方法来解决任意大小和横向几何系统系统的超相关鲍尔茨曼方程。在这里,我们首次将这些技术应用于方位流量系数$ v_n $,包括非线性模式模式耦合,并在具有现实事件逐个事件波动的初始条件上。我们展示了如何从$ v_n $中提取的线性和非线性响应系数,这是从自由流到完美流动性的不透明度的函数。我们特别注意到,远离流体动力的极限,线性和非线性响应系数的信号强度并不均匀减少,而是它们的层次结构和相对大小显示出特征性的差异。

The observation of fluid-like behavior in nucleus-nucleus, proton-nucleus and high-multiplicity proton-proton collisions motivates systematic studies of how different measurements approach their fluid-dynamic limit. We have developed numerical methods to solve the ultra-relativistic Boltzmann equation for systems of arbitrary size and transverse geometry. Here, we apply these techniques for the first time to the study of azimuthal flow coefficients $v_n$ including non-linear mode-mode coupling and to an initial condition with realistic event-by-event fluctuations. We show how both linear and non-linear response coefficients extracted from $v_n$ develop as a function of opacity from free streaming to perfect fluidity. We note in particular that away from the fluid-dynamic limit, the signal strength of linear and non-linear response coefficients does not reduce uniformly, but that their hierarchy and relative size shows characteristic differences.

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