极化率
投影机
电介质
密度矩阵
绝缘体(电)
物理
钻石
材料科学
凝聚态物理
光学
量子
量子力学
光电子学
分子
复合材料
作者
Marek Gajdoš,Kerstin Hummer,Georg Kresse,J. Furthmüller,F. Bechstedt
出处
期刊:Physical Review B
[American Physical Society]
日期:2006-01-17
卷期号:73 (4)
被引量:3081
标识
DOI:10.1103/physrevb.73.045112
摘要
In this work we derive closed expressions for the head of the frequency-dependent microscopic polarizability matrix in the projector-augmented wave (PAW) methodology. Contrary to previous applications, the longitudinal expression is utilized, resulting in dielectric properties that are largely independent of the applied potentials. The improved accuracy of the present approach is demonstrated by comparing the longitudinal and transversal expressions of the polarizability matrix for a number of cubic semiconductors and one insulator, i.e., Si, SiC, AlP, GaAs, and diamond (C), respectively. The methodology is readily extendable to more complicated nonlocal Hamiltonians or to the calculation of the macroscopic dielectric matrix including local field effects in the random phase or density functional approximation, which is demonstrated for the previously mentioned model systems. Furthermore, density functional perturbation theory is extended to the PAW method, and the respective results are compared to those obtained by summation over the conduction band states.
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