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Inclusive and effective bulk viscosities in the hadron gas

机译:强子天然气的包容性和有效的批量粘度

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摘要

We estimate the temperature dependence of the bulk viscosity in a relativistic hadron gas. Employing the Green-Kubo formalism in the SMASH (Simulating Many Accelerated Strongly-interacting Hadrons) transport approach, we study different hadronic systems in increasing order of complexity. We analyze the (in)validity of the single exponential relaxation ansatz for the bulk-channel correlation function and the strong influence of the resonances and their lifetimes. We discuss the difference between the inclusive bulk viscosity of an equilibrated, long-lived system, and the effective bulk viscosity of a short-lived mixture like the hadronic phase of relativistic heavy-ion collisions, where the processes whose inverse relaxation rate are larger than the fireball duration are excluded from the analysis. This clarifies the differences between previous approaches which computed the bulk viscosity including/excluding the very slow processes in the hadron gas. We compare our final results with previous hadron gas calculations and confirm a decreasing trend of the inclusive bulk viscosity over entropy density as temperature increases, whereas the effective bulk viscosity to entropy ratio, while being lower than the inclusive one, shows no strong dependence to temperature.
机译:我们估计了相对论性强子气体中体粘度的温度依赖性。利用SMASH(模拟多个加速强相互作用强子)输运方法中的Green Kubo形式主义,我们按复杂度的递增顺序研究了不同的强子系统。我们分析了单指数弛豫ansatz对体信道相关函数的有效性,以及共振及其寿命的强烈影响。我们讨论了一个平衡的、长寿命的系统的包容性体粘度和一个短寿命混合物(如相对论重离子碰撞的强子相)的有效体粘度之间的差异,其中逆弛豫速率大于火球持续时间的过程被排除在分析之外。这澄清了之前计算体积粘度的方法之间的差异,包括/不包括强子气体中非常缓慢的过程。我们将我们的最终结果与之前的强子气体计算结果进行了比较,并证实了随着温度的升高,包容性体积粘度相对于熵密度的下降趋势,而有效体积粘度与熵比虽然低于包容性体积粘度与熵比,但对温度没有很强的依赖性。

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