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Equation of state for hot dense matter using a relativistic screened hydrogenic model

机译:相对论屏蔽氢模型的热致密物质状态方程

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摘要

The study of matter under conditions of high density, pressure, and temperature is a valuable subject for inertial confinement fusion (ICF), astrophysical phenomena, high-power laser interaction with matter, etc. In all these cases, matter is heated and compressed by strong shocks to high pressures and temperatures, becomes partially or completely ionized via thermal or pressure ionization, and is in the form of dense plasma. The thermodynamics and the hydrodynamics of hot dense plasmas cannot be predicted without the knowledge of the equation of state (EOS) that describes how a material reacts to pressure and how much energy is involved. Therefore, the equation of state often takes the form of pressure and energy as functions of density and temperature. Furthermore, EOS data must be obtained in a timely manner in order to be useful as input in hydrodynamic codes. By this reason, the use of fast, robust and reasonably accurate atomic models, is necessary for computing the EOS of a material.
机译:在高密度,高压力和高温度条件下进行物质研究是惯性约束融合(ICF),天体物理现象,高功率激光与物质相互作用等方面的重要课题。在所有这些情况下,物质均通过对高压和高温的强烈冲击,通过热或压力电离被部分或完全电离,并呈致密等离子体的形式。如果不了解描述材料如何对压力做出反应以及涉及多少能量的状态方程(EOS),就无法预测热致密等离子体的热力学和流体力学。因此,状态方程通常采用压力和能量的形式,作为密度和温度的函数。此外,必须及时获取EOS数据,以用作流体力学代码中的输入。因此,对于计算材料的EOS,必须使用快速,可靠且合理的原子模型。

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