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Relativistic Hydrodynamics in Heavy-Ion Collisions: General Aspects and Recent Developments

机译:重离子碰撞中的相对论流体力学:一般方面和最新进展

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摘要

Relativistic hydrodynamics has been quite successful in explaining the collective behaviour of the QCD matter produced in high energy heavy-ion collisions at RHIC and LHC. We briefly eview the latest developments in the hydrodynamical modeling of relativistic heavy-ion collisions. Essential ingredients of themodel such as the hydrodynamic evolution equations, dissipation, initial conditions, equation of state, and freeze-out process are reviewed. We discuss observable quantities such as particle spectra and anisotropic flow and effect of viscosity on these observables. Recent developments such as event-by-event fluctuations, flow in small systems (proton-proton and proton-nucleus collisions), flow in ultracentral collisions, longitudinal fluctuations, and correlations and flow in intense magnetic field are also discussed.
机译:相对论流体动力学已经非常成功地解释了在RHIC和LHC的高能重离子碰撞中产生的QCD物质的集体行为。我们简要地回顾了相对论重离子碰撞的流体动力学建模的最新进展。审查了模型的基本要素,例如流体动力学演化方程,耗散,初始条件,状态方程和冻结过程。我们讨论了可观测的量,例如粒子光谱和各向异性流动以及粘度对这些可观测量的影响。还讨论了事件的逐次波动,小型系统中的流动(质子-质子和质子-核碰撞),超中心碰撞中的流动,纵向波动以及强磁场中的相关性和流动等最新发展。

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