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A self-consistent model for the study of electronic properties of hot dense plasmas in the superconfiguration approximation

机译:在超构型近似中研究热致密等离子体电子特性的自洽模型

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We propose a thermodynamically consistent model involving detailed screened ions, described by superconfigurations, in plasmas. In the present work, the electrons, bound and free, are treated quantum-mechanically so that resonances are carefully taken into account in the self-consistent calculation of the electronic structure of each superconfiguration. The procedure is in some sense similar to the one used in Inferno code developed by D.A. Liberman; however, here we perform this calculation in the ion-sphere model for each superconfiguration. The superconfiguration approximation allows rapid calculation of necessary averages over all possible configurations representing excited states of bound electrons. The model enables a fully quantum-mechanical self-consistent calculation of the electronic structure of ions and provides the relevant thermodynamic quantities (e.g., internal energy, Helmholtz free energy and pressure), together with an improved treatment of pressure Ionization. It should therefore give a better insight into the impact of plasma effects on photoabsorption spectra. (C) 2005 Elsevier Ltd. All rights reserved.
机译:我们提出了一个热力学一致的模型,该模型涉及等离子体中由超构型描述的详细筛选离子。在本工作中,对束缚电子和自由电子进行量子力学处理,以便在对每个超结构的电子结构进行自洽计算时仔细考虑共振。从某种意义上讲,该过程类似于D.A.开发的Inferno代码中使用的过程。 Liberman;但是,这里我们在每个超级配置的离子球模型中执行此计算。超构型近似值可以快速计算表示束缚电子激发态的所有可能构型上的必要平均值。该模型可以对离子的电子结构进行完全量子力学的自洽计算,并提供相关的热力学量(例如内部能,亥姆霍兹自由能和压力)以及对压力电离的改进处理。因此,应该更好地了解等离子体效应对光吸收光谱的影响。 (C)2005 Elsevier Ltd.保留所有权利。

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