物理
绝热过程
哈密顿量(控制论)
叠加原理
统计物理学
经典力学
特征向量
量子
量子力学
分子动力学
绝热定理
从头算
运动方程
数学
数学优化
作者
G. Pastore,Enrico Smargiassi,Francesco Buda
出处
期刊:Physical Review A
[American Physical Society]
日期:1991-11-01
卷期号:44 (10): 6334-6347
被引量:317
标识
DOI:10.1103/physreva.44.6334
摘要
The theoretical basis of the first-principles molecular dynamics introduced by Car and Parrinello [Phys. Rev. Lett. 55, 2471 (1985)] is investigated. We elucidate how the classical dynamics generated by the Car-Parrinello Lagrangian approximates efficiently the quantum adiabatic evolution of a system and discuss the role played by the spectrum of the eigenvalues of the Hamiltonian of Kohn and Sham [Phys. Rev. 140, A1133 (1965)]. A detailed characterization of the statistical ensemble sampled in the numerical simulation is given. By combining theoretical arguments and numerical results we demonstrate that the motion of the electronic variables is a superposition of a direct drag due to the ions and of high-frequency normal modes. By making a connection with the averaging methods of classical mechanics, we argue that whenever it is possible to get a large separation between the time scales of these modes and the ionic frequencies, the dynamics of the ions closely approximates that resulting from the adiabatic approximation. We introduce simple n-level models, easily amenable to analytic treatment, to add clarity and study the possible mechanisms of broken adiabaticity encountered in the actual calculations.
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