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首页> 外文期刊>The Journal of Chemical Physics >AB INITIO SIMULATION OF MOLECULAR AUGER SPECTRA - NUCLEAR DYNAMICS EFFECTS IN THE SPECTRA OF CARBONYL SULFIDE
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AB INITIO SIMULATION OF MOLECULAR AUGER SPECTRA - NUCLEAR DYNAMICS EFFECTS IN THE SPECTRA OF CARBONYL SULFIDE

机译:碳硫化物光谱中分子奥格谱核动力学效应的从头模拟。

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摘要

A theoretical ab initio simulation of the carbon and oxygen KLL and sulfur LMM Auger spectra of carbonyl sulfide is presented and discussed. The underlying vertical double ionization spectrum is computed using a Green's function method; the Auger intensity distributions are estimated via a two-hole population analysis of the eigenvectors and the main effects of nuclear vibrational motion on the energy position and broadening of the Auger bands are taken into account. The simulation yields accurate spectra, revealing the important role played by the nuclear dynamics effects at the origin of the very different shapes of the three spectra. These effects are particularly striking in the sulfur LMM spectrum, which is additionally characterized by evident spin-orbit coupling in the decaying state. (C) 1997 American Institute of Physics. [References: 25]
机译:提出并讨论了羰基硫的碳和氧的KLL和硫的LMM Auger光谱的理论从头计算。潜在的垂直双电离光谱是使用格林函数方法计算的。通过对特征向量进行两孔总体分析来估计俄歇强度分布,并考虑了核振动对能量位置和俄歇谱带展宽的主要影响。模拟产生准确的光谱,揭示了在三个光谱形状截然不同的起点处,核动力学效应所起的重要作用。这些影响在硫LMM光谱中尤为明显,其特征还在于衰减状态下明显的自旋轨道耦合。 (C)1997美国物理研究所。 [参考:25]

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