论文标题

在BES,Fair和Nica的能量中,重离子碰撞中的早期热化和剪切粘度与熵率

Early thermalization and shear viscosity to entropy ratio in heavy-ion collisions at energies of BES, FAIR and NICA

论文作者

Zabrodin, E., Bravina, L., Teslyk, M., Vitiuk, O.

论文摘要

在BES,FAIR和NICA的A+A碰撞中,在微观模型计算中研究了高度激发的Baryon物质的平衡。结果表明,从相对论的流体动力学开始,从碰撞的开始开始,系统的演变可以近似,尽管热和密集的核物质还不处于局部平衡状态。在火球的演变过程中,能量密度的提取值,净baryon和净陌生密度被用作统计模型(SM)的输入,以计算温度$ t $,化学电位$μ_b$和$μ_s$,以及系统的熵密度$ s $。同样,它们被用作具有周期性边界条件的盒子的输入,以研究无限核物质中的动量相关因子。剪切粘度$η$是根据Green-Kubo形式主义计算的。在所有能量中,剪切粘度与熵密度比的时间最小在时间,对应于最大重子密度。对$ t,μ_b,μ_s$的比率依赖性均针对均衡情况进行研究。

Equilibration of highly excited baryon-rich matter is studied within the microscopic model calculations in A+A collisions at energies of BES, FAIR and NICA. It is shown that the system evolution from the very beginning of the collision can be approximated by relativistic hydrodynamics, although the hot and dense nuclear matter is not in local equilibrium yet. During the evolution of the fireball the extracted values of energy density, net baryon and net strangeness densities are used as an input to Statistical Model (SM) in order to calculate temperature $T$, chemical potentials $μ_B$ and $μ_S$, and entropy density $s$ of the system. Also, they are used as an input for the box with periodic boundary conditions to investigate the momentum correlators in the infinite nuclear matter. Shear viscosity $η$ is calculated according to the Green-Kubo formalism. At all energies, shear viscosity to entropy density ratio shows minimum at time corresponding to maximum baryon density. The ratio dependence on $T, μ_B, μ_S$ is investigated for both in- and out of equilibrium cases.

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