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A new relativistic viscous hydrodynamics code and its application to the Kelvin–Helmholtz instability in high-energy heavy-ion collisions

机译:一种新的相对论粘性流体力学代码及其在高能重离子碰撞中开尔文-亥姆霍兹不稳定性的应用

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We construct a new relativistic viscous hydrodynamics code optimized in the Milne coordinates. We split the conservation equations into an ideal part and a viscous part, using the Strang spitting method. In the code a Riemann solver based on the two-shock approximation is utilized for the ideal part and the Piecewise Exact Solution (PES) method is applied for the viscous part. We check the validity of our numerical calculations by comparing analytical solutions, the viscous Bjorken’s flow and the Israel–Stewart theory in Gubser flow regime. Using the code, we discuss possible development of the Kelvin–Helmholtz instability in high-energy heavy-ion collisions.
机译:我们构建了一个在Milne坐标中优化的新的相对论粘性流体力学代码。我们使用Strang分散方法将守恒方程式分为理想部分和粘性部分。在代码中,将基于二次冲击近似的黎曼求解器用于理想零件,并将分段精确解法(PES)用于粘性零件。我们通过比较解析解决方案,粘性Bjorken流动和Gubser流动状态下的Israel-Stewart理论,来检验数值计算的有效性。使用该代码,我们讨论了高能重离子碰撞中Kelvin–Helmholtz不稳定性的可能发展。

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