完全电离电子-离子等离子体的状态方程。2延伸到相对论密度和固体相

Potekhin, Chabrier
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引用次数: 207

摘要

由点状离子组成的非理想库仑等离子体在极化电子背景下的状态解析方程[j]。Chabrier和a.y. Potekhin,物理学家。Rev. E . 58,4941(1998)]进行了改进,其适用范围大大扩大。首先,在电子具有相对论性的高密度条件下,对库仑液体自由能中电子筛选贡献的拟合进行了改进。其次,我们计算了库仑固体(bcc和fcc)的筛选贡献,并推导了解析拟合表达式。第三,我们提出了一个简单的近似液体单组分离子等离子体的内部和自由能,精确到最近蒙特卡罗模拟的数值误差范围内。我们得到了单组分等离子体固液相变时耦合参数的更新值:Gamma(m)=175.0+/-0.4(1sigma)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Equation of state of fully ionized electron-ion plasmas. II. Extension To relativistic densities and to the solid phase

The analytic equation of state of nonideal Coulomb plasmas consisting of pointlike ions immersed in a polarizable electron background [G. Chabrier and A. Y. Potekhin, Phys. Rev. E 58, 4941 (1998)] is improved, and its applicability range is considerably extended. First, the fit of the electron screening contribution in the free energy of the Coulomb liquid is refined at high densities where the electrons are relativistic. Second, we calculate the screening contribution for the Coulomb solid (bcc and fcc) and derive an analytic fitting expression. Third, we propose a simple approximation to the internal and free energy of the liquid one-component plasma of ions, accurate within the numerical errors of the most recent Monte Carlo simulations. We obtain an updated value of the coupling parameter at the solid-liquid phase transition for the one-component plasma: Gamma(m)=175.0+/-0.4(1sigma).

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