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Compressive sensing lattice dynamics. II. Efficient phonon calculations and long-range interactions

机译:压缩传感晶格动力学。 II。 高效的声子计算和远程交互

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We apply the compressive sensing lattice dynamics method to calculate phonon dispersion for crystalline solids. While existing methods such as frozen phonon, small displacement, and linear response are routinely applied for phonon calculations, they are considerably more expensive or cumbersome to apply to certain solids, including structures with large unit cells or low symmetry, systems that require more expensive electronic structure treatment, and polar semiconductors/insulators. In the latter case, we propose an approach based on a corrected long-range force constant model with proper treatment of the acoustic sum rule and the symmetric on-site force constant matrix. Our approach is demonstrated to be accurate and efficient for these systems through case studies of NaCl, CeO2, Y3Al5O12, and La2Fe14B.
机译:我们应用压缩检测晶格动力学方法来计算结晶固体的声子分散体。 虽然现有的诸如冻结声子,小位移和线性响应的现有方法是常规应用于声子计算的,但它们具有相当昂贵或繁琐的施加到某些固体,包括具有大单元电池或低对称性的结构,需要更昂贵的电子设备 结构处理,和极性半导体/绝缘子。 在后一种情况下,我们提出了一种基于校正的远程力恒定模型的方法,具有正确处理声学和规则和对称的现场力常数矩阵。 通过对NaCl,CeO2,Y3Al5O12和La2Fe14b的案例研究,我们的方法对这些系统进行了准确和高效。

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