首页> 外文期刊>The Journal of Chemical Physics >Effect of relativity on the ionization spectra of the xenon fluorides XeFn (n=2, 4, 6) - art. no. 214302
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Effect of relativity on the ionization spectra of the xenon fluorides XeFn (n=2, 4, 6) - art. no. 214302

机译:相关性对氟化氙气XeFn(n = 2、4、6)的电离光谱的影响-技术没有。 214302

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摘要

Noble gas compounds exhibit special chemical bonding situations and have been investigated by various spectroscopic and theoretical techniques. In this work we calculate the ionization spectra of the xenon fluorides (XeF2, XeF4, and XeF6) in the valence and subvalence (down to Xe 4d) areas by application of the recently developed Dirac-Hartree-Fock one-particle propagator technique. In this technique, the relativistic (four-component) and electron correlation effects are computed simultaneously. The xenon compounds show considerable spin-orbit splitting strongly influencing the photoelectron spectrum not reproducible in prior calculations. Comparison to one-component methods is made and the occurring satellite structures are interpreted. The satellite structures can be attributed either to the breakdown of the one-particle picture or to a reflection of intra-atomic and interatomic Auger decay processes within the molecule. (c) 2005 American Institute of Physics.
机译:稀有气体化合物表现出特殊的化学键合情况,并已通过各种光谱和理论技术进行了研究。在这项工作中,我们通过应用最新开发的Dirac-Hartree-Fock单粒子传播技术,计算了价数和价数范围(低至Xe 4d)区域中氙气氟化物(XeF2,XeF4和XeF6)的电离光谱。在此技术中,同时计算相对论(四分量)效应和电子相关效应。氙化合物显示出相当大的自旋轨道分裂,从而强烈影响先前计算中无法再现的光电子光谱。与单组分方法进行了比较,并解释了发生的卫星结构。卫星结构既可以归因于单粒子图像的分解,也可以归因于分子内原子内和原子间俄歇衰变过程的反射。 (c)2005年美国物理研究所。

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