赝势
紧密结合
激发态
哈密顿量(控制论)
分子动力学
哈密尔顿矩阵
密度矩阵
原子轨道
分子物理学
电子结构
激发
材料科学
物理
原子物理学
量子力学
特征向量
数学优化
电子
量子
对称矩阵
数学
作者
Otto F. Sankey,David J. Niklewski
出处
期刊:Physical review
[American Physical Society]
日期:1989-08-15
卷期号:40 (6): 3979-3995
被引量:1484
标识
DOI:10.1103/physrevb.40.3979
摘要
A new, approximate method has been developed for computing total energies and forces for a variety of applications including molecular-dynamics simulations of covalent materials. The method is tight-binding-like and is founded on density-functional theory within the pseudopotential scheme. Slightly excited pseudo-atomic-orbitals are used to derive the tight-binding Hamiltonian matrix in real space. The method is used to find the electronic states and total energies for a variety of crystalline phases of Si and the ${\mathrm{Si}}_{2}$ molecule. Excellent agreement is found with experiment and other first-principles methods. As simple applications of the method, we perform a molecular-dynamics simulated-annealing study of the ${\mathrm{Si}}_{3}$ molecule to determine the ground-state configuration, and a molecular-dynamics simulation of the spectral density function of the ${\mathrm{Si}}_{2}$ molecule at high and low excitation levels.
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