论文标题

针对第一原则的原子体力常数计算:申请NACL,PBTIO $ _3 $,MONOLAYER CRI $ _3 $和扭曲的双层石墨烯

Partitioning interatomic force constants for first-principles phonon calculations: Applications to NaCl, PbTiO$_3$, monolayer CrI$_3$, and twisted bilayer graphene

论文作者

Lee, Chi-Cheng, Hsu, Chin-En, Hsueh, Hung-Chung

论文摘要

第一原理声子计算已被广泛地用于研究凝结物质的振动特性,其中动态矩阵通常是通过超级恒定恒定计算或线性响应方法构建的。以不同的方式,可以在两种方法中引入超级电池。除非超级电池足够大,否则插值的声子属性高度取决于超级细胞的形状和大小,而施加的周期性可能会产生易于忽略的非物理结果。沿着这条线,讨论了力常数分区的概念,并由NACL,PBTIO $ _3 $,单层CRI $ _3 $和扭曲的双层石墨烯作为示例,以说明强加超级电池周期性的效果。为了减少非物理效应,仅依赖于翻译对称性和原子间距离的一种简单分配力常数的简单方法被证明能够提供合理的结果。分区方法还与描述LO到LOT分裂的混合空间方法兼容。适当的分区对于研究具有低对称性的中等大小的系统(例如底物上的二维材料)尤其重要,并且对于使用原子基础函数在第一原理包中实施声子计算有用,其中通常不适合对大型计算的对称性操作。

First-principles phonon calculations have been widely performed for studying vibrational properties of condensed matter, where the dynamical matrix is commonly constructed via supercell force-constant calculations or the linear response approach. With different manners, a supercell can be introduced in both methods. Unless the supercell is large enough, the interpolated phonon property highly depends on the shape and size of the supercell and the imposed periodicity could give unphysical results that can be easily overlooked. Along this line, the concept of partition of force constants is discussed, and addressed by NaCl, PbTiO$_3$, monolayer CrI$_3$, and twisted bilayer graphene as examples for illustrating the effects of the imposed supercell periodicity. To diminish the unphysical effects, a simple method of partitioning force constants, which relies only on the translational symmetry and interatomic distances, is demonstrated to be able to deliver reasonable results. The partition method is also compatible with the mixed-space approach for describing LO-TO splitting. The proper partition is especially important for studying moderate-size systems with low symmetry, such as two-dimensional materials on substrates, and useful for the implementation of phonon calculations in first-principles packages using atomic basis functions, where symmetry operations are usually not applied owing to the suitability for large-scale calculations.

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