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Electron energy loss and inelastic x-ray scattering cross sections from time-dependen density-functional perturbation theory

机译:随时间变化的密度函数微扰理论的电子能量损失和非弹性X射线散射截面

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摘要

The Liouville-Lanczos approach to linear-response time-dependent density-functional theory is generalized so as to encompass electron energy loss and inelastic x-ray scattering spectroscopies in periodic solids. The computation of virtual orbitals and the manipulation of large matrices are avoided by adopting a representation of response orbitals borrowed from (time-independent) density functional perturbation theory and a suitable Lanczos recursion scheme. The latter allows the bulk of the numerical work to be performed at any given transferred momentum only once, for a whole extended frequency range. The numerical complexity of the method is thus greatly reduced, making the computation of the loss function over a wide frequency range at any given transferred momentum only slightly more expensive than a single standard ground-state calculation and opening the way to computations for systems of unprecedented size and complexity. Our method is validated on the paradigmatic examples of bulk silicon and aluminum, for which both experimental and theoretical results already exist in the literature.
机译:推广了线性响应时间依赖密度泛函理论的Liouville-Lanczos方法,以涵盖周期性固体中的电子能量损失和非弹性X射线散射光谱。通过采用从(与时间无关)密度泛函摄动理论和合适的Lanczos递归方案中借用的响应轨道的表示,可以避免虚拟轨道的计算和大型矩阵的操纵。对于整个扩展的频率范围,后者只允许在任何给定的传递动量下执行大量数值工作。因此,该方法的数值复杂性大大降低,使得在任何给定的传递动量下,在宽频率范围内的损耗函数的计算仅比单一标准基态计算稍贵,这为前所未有的系统计算开辟了道路大小和复杂性。我们的方法在块状硅和铝的范例示例中得到了验证,对于这些示例,实验和理论结果均已存在于文献中。

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