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Autoionization resonances in the argon iso-electronic sequence

机译:氩等电序列中的自电离共振

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摘要

We report results of theoretical studies of 3s → np and 2s → np autoionization resonances, respectively, in the 3p and the 2p photoionization cross sections of a few members (Ar, K ~+, Ca ~(2+), Fe ~(8+), Zn ~(12+), and Kr ~(18+)) of the argon isoelectronic sequence, within the framework of the relativistic random phase approximation and using the relativistic multichannel quantum defect theory. The present approach would enable analysis of complex atomic spectra especially of atomic and (or) ionic species that are found in stellar gases in a computationally economical way. The shape profiles of the autoionization resonances have been analyzed in the present work using appropriate Fano parameters. The quantum defects determined for some of the lower or intermediate excited states are found to be in good agreement with the experimental and (or) theoretical results.
机译:我们报告了3s→np和2s→np自电离共振的理论研究结果,分别在少数成员(Ar,K〜+,Ca〜(2 +),Fe〜(8)的3p和2p光电离截面中在相对论随机相位近似的框架内,并使用相对论多通道量子缺陷理论,对氩等电子序列的+),Zn〜(12+)和Kr〜(18+))进行了研究。本方法将使得能够以计算上经济的方式分析复杂原子光谱,尤其是分析在恒星气体中发现的原子和(或)离子种类。在本工作中,已经使用适当的Fano参数分析了自电离共振的形状轮廓。发现对于某些较低或中间激发态所确定的量子缺陷与实验和(或)理论结果非常吻合。

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