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Shear viscosity, cavitation and hydrodynamics at LHC

机译:LHC的剪切粘度,空化和流体动力学

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We study evolution of quark–gluon matter in the ultrarelativistic heavy-ion collisions within the frame work of relativistic second-order viscous hydrodynamics. In particular, by using the various prescriptions of a temperature-dependent shear viscosity to the entropy ratio, we show that the hydrodynamic description of the relativistic fluid becomes invalid due to the phenomenon of cavitation. For most of the initial conditions relevant for LHC, the cavitation sets in very early stage. The cavitation in this case is entirely driven by the large values of shear viscosity. Moreover we also demonstrate that the conformal terms used in equations of the relativistic dissipative hydrodynamic can influence the cavitation time.
机译:我们研究相对论二阶粘性流体力学框架内超相对论重离子碰撞中夸克-胶子物质的演化。特别地,通过使用与温度相关的剪切粘度对熵比的各种规定,我们表明相对论流体的流体力学描述由于空化现象而变得无效。对于与大型强子对撞机相关的大多数初始条件,空化作用处于非常早期的阶段。在这种情况下,气穴现象完全由剪切粘度的大值驱动。此外,我们还证明,相对论耗散流体动力学方程中使用的共形项会影响空化时间。

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