Parameterizing smooth viscous fluid dynamics with a viscous blast wave

Zhidong Yang, Rainer J. Fries
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引用次数: 2

Abstract

Abstract Blast wave fits are widely used in high energy nuclear collisions to capture essential features of global properties of systems near kinetic equilibrium. They usually provide temperature fields and collective velocity fields on a given hypersurface. We systematically compare blast wave fits of fluid dynamic simulations for Au+Au collisions at sqrt(s_NN) = 200 GeV and Pb+Pb collisions at sqrt(s_NN) = 2.76 TeV with the original simulations. In particular, we investigate how faithful the viscous blast wave introduced in [1] can reproduce the given temperature and specific shear viscosity fixed at freeze-out of a viscous fluid dynamic calculation, if the final spectrum and elliptic flow of several particle species are fitted. We find that viscous blast wave fits describe fluid dynamic pseudodata rather well and reproduce the specific shear viscosities to good accuracy. However, extracted temperatures tend to be underpredicted, especially for peripheral collisions. We investigate possible reasons for these deviations. We establish maps from true to fitted values. These maps can be used to improve raw fit results from viscous blast wave fits. Although our work is limited to two specific, albeit important, parameters and two collision systems, the same procedure can be easily generalized to other parameters and collision systems.
用粘性爆炸波参数化光滑粘性流体动力学
摘要爆炸波拟合被广泛应用于高能核碰撞中,以捕捉接近动力学平衡的系统整体性质的基本特征。它们通常提供给定超表面上的温度场和集体速度场。我们系统地比较了在sqrt(s_NN) = 200gev下Au+Au碰撞和在sqrt(s_NN) = 2.76 TeV下Pb+Pb碰撞的流体动力学模拟与原始模拟的爆炸波拟合。特别是,我们研究了[1]中引入的粘性爆炸波在粘性流体动力学计算中如何忠实地再现给定的温度和冻结时固定的比剪切粘度,如果拟合了几种颗粒的最终谱和椭圆流。我们发现粘性爆炸波拟合能很好地描述流体动力学伪数据,并能很好地再现比剪切黏度。然而,提取的温度往往被低估,特别是对于外围碰撞。我们调查这些偏差的可能原因。我们建立从真值到拟合值的映射。这些图可用于改进粘性爆炸波拟合的原始拟合结果。虽然我们的工作仅限于两个特定的,但很重要的参数和两个碰撞系统,但同样的过程可以很容易地推广到其他参数和碰撞系统。
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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