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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Influence of hot and dense plasmas on energy levels and oscillator strengths of ions: beryllium-like ions for Z=26-36
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Influence of hot and dense plasmas on energy levels and oscillator strengths of ions: beryllium-like ions for Z=26-36

机译:热和密集等离子体对离子的能级和振荡器强度的影响:Z = 26-36的类铍离子

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摘要

An approach based on the self-consistent-field multi-configuration Dirac-Fock model has been developed for the calculation of atomic structures and transition properties of ions in hot and dense plasmas. The correlation effects and the angular momentum coupling among the bound electrons are treated in a way usually employed in a normal multi-configuration Dirac-Fock method. Influence of plasma screening on transition energies and oscillator strengths is investigated by introducing a correction to the one-electron potential to account for the screening of the ionized electrons. This correction is calculated from the ionized electron micro-space distribution, which is obtained based on an average atom model for the temperature- and density-dependent average ionization of atoms in plasmas. As examples, results of beryllium isoelectronic sequence ions for Z = 26-36 demonstrate that the 2s(2)-[2s(1/2), 2p(1/2)](1) and 2s(2)-[2s(1/2), 2p(3/2)](1) transition energies increase with plasma density and temperature, leading to a blue-shift of these lines. The overall trend for the relative changes of the oscillator strengths of the same transitions is also presented. Comparisons between the results of the present model and those of the uniform ion sphere model are made to show the significance of the micro-space density variation of the ionized electrons on the calculated results.
机译:已经开发了一种基于自洽场多配置Dirac-Fock模型的方法,用于计算高温等离子体和密集等离子体中离子的原子结构和跃迁特性。束缚电子之间的相关效应和角动量耦合以通常在常规多构型狄拉克-福克方法中采用的方式进行处理。通过对单电子势进行校正以解决离子化电子的屏蔽问题,研究了等离子体屏蔽对跃迁能和振荡器强度的影响。该校正是根据电离的电子微空间分布计算得出的,该分布是基于平均原子模型获得的,该平均原子模型用于等离子体中原子的温度和密度相关的平均电离。例如,Z = 26-36的铍等电子序列离子的结果表明2s(2)-[2s(1/2),2p(1/2)](1)和2s(2)-[2s( 1/2),2p(3/2)](1)跃迁能随等离子体密度和温度的升高而增加,导致这些谱线发生蓝移。还显示了相同跃迁的振荡器强度相对变化的总体趋势。对本模型的结果与均匀离子球模型的结果进行比较,以显示电离电子的微空间密度变化对计算结果的重要性。

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