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X-ray absorption spectra of hexagonal ice and liquid water by all-electron Gaussian and augmented plane wave calculations

机译:通过全电子高斯和增强平面波计算得出六角形冰和液态水的X射线吸收光谱

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Full potential x-ray spectroscopy simulations of hexagonal ice and liquid water are performed by means of the newly implemented methodology based on the Gaussian augmented plane waves formalism. The computed spectra obtained within the supercell approach are compared to experimental data. The variations of the spectral distribution determined by the quality of the basis set, the size of the sample, and the choice of the core-hole potential are extensively discussed. The second part of this work is focused on the understanding of the connections between specific configurations of the hydrogen bond network and the corresponding contributions to the x-ray absorption spectrum in liquid water. Our results confirm that asymmetrically coordinated molecules, in particular, those donating only one or no hydrogen bond, are associated with well identified spectral signatures that differ significantly from the ice spectral profile. However, transient local structures, with half formed hydrogen bonds, may still give rise to spectra with dominant postedge contributions and relatively weaker oscillator strengths at lower energy. This explains why by averaging the spectra over all the O atoms of liquid instantaneous configurations extracted from ab initio molecular dynamics trajectories, the spectral features indicating the presence of weak or broken hydrogen bonds turn out to be attenuated and sometimes not clearly distinguishable. (C) 2008 American Institute of Physics.
机译:六边形冰和液态水的全能X射线光谱模拟是通过基于高斯增强平面波形式主义的新实现方法进行的。将在超级单元方法中获得的计算光谱与实验数据进行比较。光谱分布的变化由基集的质量,样品的大小以及岩心-空穴势的选择所决定。这项工作的第二部分着重于理解氢键网络的特定构型与液态水中X射线吸收光谱的相应贡献之间的联系。我们的结果证实,不对称配位的分子,特别是那些仅提供一个氢键或不提供氢键的分子,与良好识别的光谱特征相关,该光谱特征与冰光谱特征存在显着差异。但是,具有一半形成的氢键的瞬态局部结构可能仍会产生具有主要后缘贡献且在较低能量下具有相对较弱的振荡器强度的光谱。这解释了为什么通过对从头算分子动力学轨迹提取的液体瞬时构型的所有O原子的光谱求平均,表明弱或断裂的氢键存在的光谱特征竟被衰减了,有时无法清楚地区分。 (C)2008美国物理研究所。

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