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稠密等离子体中的部分电离:平均原子密度泛函模型之间的比较

Partial ionization in dense plasmas: comparisons among average-atom density functional models.

作者信息

Murillo Michael S, Weisheit Jon, Hansen Stephanie B, Dharma-wardana M W C

机构信息

Computational Physics and Methods Group, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jun;87(6):063113. doi: 10.1103/PhysRevE.87.063113. Epub 2013 Jun 28.

Abstract

Nuclei interacting with electrons in dense plasmas acquire electronic bound states, modify continuum states, generate resonances and hopping electron states, and generate short-range ionic order. The mean ionization state (MIS), i.e, the mean charge Z of an average ion in such plasmas, is a valuable concept: Pseudopotentials, pair-distribution functions, equations of state, transport properties, energy-relaxation rates, opacity, radiative processes, etc., can all be formulated using the MIS of the plasma more concisely than with an all-electron description. However, the MIS does not have a unique definition and is used and defined differently in different statistical models of plasmas. Here, using the MIS formulations of several average-atom models based on density functional theory, we compare numerical results for Be, Al, and Cu plasmas for conditions inclusive of incomplete atomic ionization and partial electron degeneracy. By contrasting modern orbital-based models with orbital-free Thomas-Fermi models, we quantify the effects of shell structure, continuum resonances, the role of exchange and correlation, and the effects of different choices of the fundamental cell and boundary conditions. Finally, the role of the MIS in plasma applications is illustrated in the context of x-ray Thomson scattering in warm dense matter.

摘要

在致密等离子体中与电子相互作用的原子核会获得电子束缚态、改变连续态、产生共振和跳跃电子态,并产生短程离子有序。平均电离态(MIS),即此类等离子体中平均离子的平均电荷Z,是一个有价值的概念:赝势、对分布函数、状态方程、输运性质、能量弛豫率、不透明度、辐射过程等,都可以使用等离子体的MIS比全电子描述更简洁地表述。然而,MIS没有唯一的定义,在不同的等离子体统计模型中有不同的使用和定义方式。在此,我们基于密度泛函理论,利用几种平均原子模型的MIS公式,比较了包含不完全原子电离和部分电子简并情况的铍、铝和铜等离子体的数值结果。通过将现代基于轨道的模型与无轨道的托马斯 - 费米模型进行对比,我们量化了壳层结构、连续共振、交换和关联的作用以及基元胞和边界条件不同选择的影响。最后,在热致密物质的x射线汤姆逊散射背景下说明了MIS在等离子体应用中的作用。

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