哈密顿量(控制论)
物理
库仑
电荷(物理)
可转让性
密度泛函理论
紧密结合
Atom(片上系统)
电荷密度
量子力学
航程(航空)
统计物理学
原子物理学
电子结构
材料科学
电子
数学
数学优化
罗伊特
嵌入式系统
统计
复合材料
计算机科学
作者
Marcus Elstner,D. Porezag,G. Jungnickel,J. Elsner,M. Haugk,Thomas Frauenheim,Sándor Suhai,Gotthard Seifert
出处
期刊:Physical review
日期:1998-09-15
卷期号:58 (11): 7260-7268
被引量:3834
标识
DOI:10.1103/physrevb.58.7260
摘要
We outline details about an extension of the tight-binding (TB) approach to improve total energies, forces, and transferability. The method is based on a second-order expansion of the Kohn-Sham total energy in density-functional theory (DFT) with respect to charge density fluctuations. The zeroth order approach is equivalent to a common standard non-self-consistent (TB) scheme, while at second order a transparent, parameter-free, and readily calculable expression for generalized Hamiltonian matrix elements may be derived. These are modified by a self-consistent redistribution of Mulliken charges (SCC). Besides the usual ``band structure'' and short-range repulsive terms the final approximate Kohn-Sham energy additionally includes a Coulomb interaction between charge fluctuations. At large distances this accounts for long-range electrostatic forces between two point charges and approximately includes self-interaction contributions of a given atom if the charges are located at one and the same atom. We apply the new SCC scheme to problems where deficiencies within the non-SCC standard TB approach become obvious. We thus considerably improve transferability.
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