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Account of the Fine Structure of Hydrogen Atom Levels in the Effective Emission Cross Sections of Balmer Lines Excited by Electron Impact in Gases and Plasma

机译:气体和等离子体中的电子碰撞激发的巴尔默线有效发射截面中氢原子能级的精细结构

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摘要

The possibility of a correct account of the fine structure was shown for two limiting cases observed in beam and plasma experiments. A significant difference was found in the emission cross sections and the rate coefficients of direct and dissociative excitation of the H_(α) and H_(β) lines by electron impact in two limiting cases (e.g., this difference reaches an order of magnitude for dissociative excitation of the H_(β) line). The most reliable data on the cross sections and the rate coefficients of direct and dissociative excitation of the H_(α) and H_(β) lines by electron impact were found for both limiting cases. It was shown that, among the first four lines of Balmer series (rather easily detected), only the first two lines, i.e., H_(α) and H_(β), can be currently employed in plasma spectroscopy studies because of the absence of data on the partial excitation cross sections of hydrogen atom nl-sublevels with n≥5.
机译:对于在束流和等离子体实验中观察到的两个极限情况,显示了正确解释精细结构的可能性。在两种极限情况下,在电子发射的作用下,H_(α)和H_(β)线的发射截面和直接和解离激发的速率系数均存在显着差异(例如,对于解离,该差异达到一个数量级)激发H_(β)线)。在这两种极限情况下,都发现了最可靠的横截面数据,以及电子撞击对H_(α)和H_(β)线的直接和解离激发的速率系数。结果表明,在巴尔默级数的前四行(很容易检测到)中,由于缺少光谱学,目前只能在等离子体光谱研究中使用前两行,即H_(α)和H_(β)。 n≥5的氢原子nl子级的部分激发截面的数据。

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