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首页> 外文期刊>The Journal of Chemical Physics >Theoretical study of molecular vibrations in electron momentum spectroscopy experiments on furan: An analytical versus a molecular dynamical approach
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Theoretical study of molecular vibrations in electron momentum spectroscopy experiments on furan: An analytical versus a molecular dynamical approach

机译:呋喃电子动能谱实验中分子振动的理论研究:分析与分子动力学方法

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The influence of thermally induced nuclear dynamics (molecular vibrations) in the initial electronic ground state on the valence orbital momentum profiles of furan has been theoretically investigated using two different approaches. The first of these approaches employs the principles of Born-Oppenheimer molecular dynamics, whereas the so-called harmonic analytical quantum mechanical approach resorts to an analytical decomposition of contributions arising from quantized harmonic vibrational eigenstates. In spite of their intrinsic differences, the two approaches enable consistent insights into the electron momentum distributions inferred from new measurements employing electron momentum spectroscopy and an electron impact energy of 1.2 keV. Both approaches point out in particular an appreciable influence of a few specific molecular vibrations of A(1) symmetry on the 9a(1) momentum profile, which can be unravelled from considerations on the symmetry characteristics of orbitals and their energy spacing. (C) 2015 AIP Publishing LLC.
机译:理论上已经使用两种不同的方法研究了初始电子基态中热诱导的核动力学(分子振动)对呋喃的价轨道动量分布的影响。这些方法中的第一种采用了Born-Oppenheimer分子动力学原理,而所谓的谐波分析量子力学方法则是对由谐波振动本征态产生的贡献进行解析分解。尽管存在固有差异,但这两种方法仍能使人们始终如一地洞悉从采用电子动量谱和1.2 keV的电子冲击能进行的新测量得出的电子动量分布。两种方法都特别指出了A(1)对称性的一些特定分子振动对9a(1)动量分布的明显影响,可以从对轨道的对称性及其能量间隔的考虑中解开。 (C)2015 AIP Publishing LLC。

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