论文标题
展开第一原理的杂质材料LCAO电子结构计算的光学过渡权重计算
Unfolding optical transition weights of impurity materials for first-principles LCAO electronic structure calculations
论文作者
论文摘要
一种分析光学转变的方法是通过将库拜木材公式与展开的方法相结合,以构建具有光学过渡权重的展开的电子带结构,这使我们能够研究光学转变如何被诸如杂质,空置,空位和结构的缺陷扰动。基于Kubo-Greenwood公式,我们首先使用原子轨道的线性组合基于第一原理电子结构计算来计算频率依赖性的光电电导率。从原子轨道基集中受益,频率依赖性的光导率可以追溯到其各个组件,然后再在所有$ k $点和频段上求和。结果,可以将材料的光学过渡权重放在展开的电子带结构上,以显示不同$ K $点和频段的贡献。该方法对于研究材料中存在杂质而导致的光学转变中断裂对称性的影响特别有用。作为演示,电子带结构显示了单层Si掺杂石墨烯的分解光学过渡权重。
A method to analyze optical transitions is developed by combining the Kubo-Greenwood formula with the unfolding method to construct an unfolded electronic band structure with optical transition weights, which allows us to investigate how optical transitions are perturbed by imperfections such as impurity, vacancy, and structural distortions. Based on the Kubo-Greenwood formula, we first calculate frequency-dependent optical conductivity based on the first-principles electronic structure calculations using the linear combinations of atomic orbitals. Benefiting from the atomic orbital basis sets, the frequency-dependent optical conductivity can be traced back to their individual components before summations over all of $k$ points and bands. As a result, optical transition weights of the material can be put on the unfolded electronic band structure to show contributions at different $k$ points and bands. This method is especially useful to study the effects of broken symmetry in the optical transitions due to presence of impurities in the materials. As a demonstration, decomposed optical transition weights of a monolayer Si-doped graphene are shown in the electronic band structure.