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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >A purely classical description of crossings of energy levels and spectroscopic signatures of charge exchange
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A purely classical description of crossings of energy levels and spectroscopic signatures of charge exchange

机译:关于能级和电荷交换光谱特征的纯经典描述

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Charge exchange and crossings of corresponding energy levels that enhance charge exchange are strongly connected with problems of energy loss and diagnostics in high-temperature plasmas. Charge exchange has also been proposed as one of the most effective mechanisms for population inversion in the soft x-ray and VUV ranges. One area of the most fundamental theoretical importance in the study of charge exchange is the problem of electron terms in the field of two stationary Coulomb centres (TCC) of charges Z and Z' separated by a distance R. This involves fascinating atomic physics: the terms can have crossings and quasicrossings. These rich features of the TCC problem are also manifest in other areas of physics such as plasma spectroscopy: a quasicrossing of the TCC terms, by enhancing charge exchange, can result in an unusual structure (a dip) in the spectral line profile emitted by a Z-ion from a plasma consisting of both Z- and Z'-ions, as has been shown theoretically and experimentally The paradigm is that these sophisticated features of the TCC problem and their flourishing applications are inherently quantum phenomena. In this paper we disprove this paradigm. We present a purely classical description of both the crossings of energy levels in the TCC problem and the dips in the corresponding spectral line profiles caused by the crossing (via enhanced charge exchange). Our classical description is based on first principles and does not use any model assumptions. [References: 34]
机译:电荷交换和增强电荷交换的相应能级的交叉与高温等离子体中的能量损失和诊断问题密切相关。电荷交换也被认为是在软X射线和VUV范围内反转种群最有效的机制之一。在电荷交换研究中,最基本的理论意义之一是在两个固定的电荷Z和Z'相距R的静止库仑中心(TCC)领域中的电子项问题。这涉及到令人着迷的原子物理学:术语可以有交叉和准交叉。 TCC问题的这些丰富特征还体现在其他物理领域,例如等离子光谱:通过增强电荷交换,TCC项的准交叉会导致由ACC发射的光谱线轮廓出现异常结构(下降)。从理论上和实验上都可以看出,由Z和Z'离子组成的等离子体中的Z离子。范式是TCC问题的这些复杂特征及其蓬勃发展的应用固有地是量子现象。在本文中,我们证明了这种范式。我们对TCC问题中的能级交叉以及由交叉引起的相应光谱线分布的下降(通过增强的电荷交换)给出了纯古典的描述。我们的经典描述基于第一原理,并且不使用任何模型假设。 [参考:34]

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