激光产生等离子体的辐射依赖电离模型

M. Busquet
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引用次数: 106

摘要

为了模拟激光产生的等离子体,流体动力学代码需要一个原子物理包,用于状态方程和光学性质,它不使用局部热力学平衡(LTE)假设。然而,在x射线激光研究中,以及在间接驱动惯性约束聚变研究中,可以发现高Z材料,其中辐射捕获可以诱导与光学薄描述的显著偏离。提出了一种利用辐射依赖电离将现有的LTE码转换成非LTE码的方法。该方法在数值上简单,计算时间方面的成本低,足以用于二维模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radiation-dependent ionization model for laser-created plasmas
For the simulation of laser‐created plasmas, hydrodynamic codes need an atomic physics package, for both the equation of state and the optical properties, which does not use the hypothesis of local thermodynamical equilibrium (LTE). However, in x‐ray laser studies, as well as in indirect drive inertial confinement fusion studies, high‐Z materials can be found where radiation trapping can induce a significant departure from the optically thin description. A method is presented in which an existing LTE code can be changed into a non‐LTE code with radiation‐dependent ionization. This method is numerically simple and its cost, in terms of computing time, is low enough to be used in two‐dimensional simulations.
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