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首页> 外文期刊>Journal of physical chemistry letters >Nuclear Dynamical Correlation Effects in X-ray Spectroscopy from a Theoretical Time-Domain Perspective
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Nuclear Dynamical Correlation Effects in X-ray Spectroscopy from a Theoretical Time-Domain Perspective

机译:从理论时域视角来的X射线光谱中的核动力学效应

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To date X-ray spectroscopy has become a routine tool that can reveal highly local and element-specific information on the electronic structure of atoms in complex environments. Here, we focus on nuclear dynamical correlation effects in X-ray spectra and develop a rigorous time-correlation function method employing ground state classical molecular dynamics simulations. The importance of nuclear correlation phenomena is demonstrated by comparison against the results from the conventional sampling approach performed on the same data set for gas phase water. In contrast to the first-order absorption, second-order resonant inelastic scattering spectra exhibit pronounced fingerprints of nuclear motions. The developed methodology is not biased to a particular electronic structure method and, owing to its generality, can be applied to, e.g., X-ray photoelectron and Auger spectroscopies.
机译:到目前为止,X射线光谱已成为一个例程工具,可以揭示关于复杂环境中原子的电子结构的高度本地和元素特定信息。 这里,我们专注于X射线光谱中的核动力学相关效果,并开发采用地态经典分子动力学模拟的严格的时间相关函数方法。 通过与对气相水的相同数据集的传统采样方法的结果进行比较来证明核相关现象的重要性。 与一阶吸收相反,二阶共振无弹性散射光谱表现出明显的核动作指纹。 开发的方法没有偏向特定的电子结构方法,并且由于其一般性,可以应用于例如X射线光电子和螺旋谱谱。

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