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首页> 外文期刊>The European physical journal, C. Particles and fields >Relativistic viscous hydrodynamics for heavy-ion collisions with ECHO-QGP
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Relativistic viscous hydrodynamics for heavy-ion collisions with ECHO-QGP

机译:与ECHO-QGP进行重离子碰撞的相对论性粘性流体动力学

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摘要

We present ECHO-QGP, a numerical code for (3+1)-dimensional relativistic viscous hydrodynamics designed for the modeling of the space-time evolution of the matter created in high-energy nuclear collisions. The code has been built on top of the Eulerian Conservative High-Order astrophysical code for general relativistic magneto-hydrodynamics (Del Zanna et al. in Astron. Astrophys. 473:11, 2007] and here it has been upgraded to handle the physics of the Quark-Gluon Plasma. ECHO-QGP features second-order treatment of causal relativistic viscosity effects both in Minkowskian and in Bjorken coordinates; partial or complete chemical equilibrium of hadronic species before kinetic freeze-out; initial conditions based on the Glauber model, including a Monte-Carlo routine for event-by-event fluctuating initial conditions; a freeze-out procedure based on the Cooper-Frye prescription. The code is extensively validated against several test problems and results always appear accurate, as guaranteed by the combination of the conservative (shock-capturing) approach and the high-order methods employed. ECHO-QGP can be extended to include evolution of the electromagnetic fields coupled to the plasma.
机译:我们提出了ECHO-QGP,这是用于(3 + 1)维相对论粘性流体力学的数字代码,旨在模拟高能核碰撞中产生的物质的时空演化。该代码建立在一般相对论磁流体力学的欧拉保守高阶天体物理学代码之上(Del Zanna等人在Astron。Astrophys。473:11,2007),在此已进行了升级,以处理ECHO-QGP在Minkowskian和Bjorken坐标中均具有因果相对论粘度效应的二阶处理;动力学冻结前强子物质的部分或完全化学平衡;基于Glauber模型的初始条件,包括蒙特卡洛程序用于逐个事件的初始条件波动;基于Cooper-Frye处方的冻结程序该代码针对多个测试问题进行了广泛验证,并且由于结合了以下两种方法,因此保证了结果的准确性: ECHO-QGP可以扩展为包括耦合到等离子体的电磁场的演化。

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