论文标题

用密度功能理论的力交换能量

Exchange energies with forces in density-functional theory

论文作者

Tancogne-Dejean, Nicolas, Penz, Markus, Laestadius, Andre, Csirik, Mihály A., Ruggenthaler, Michael, Rubio, Angel

论文摘要

我们建议将地面DFT中的能量功能与物理等效的精确力表达式交换,这是一种新的有前途的途径,可以近似交换相关电位和能量。与通常的基于能量的程序相比,我们将相互作用和辅助Kohn-Sham系统之间的力差分为Hartree,交换和相关力。通过求解泊松方程获得相应的标量电势,而力的附加横向部分产生矢量电位。这些矢量电势遵守交换和相关贡献之间的确切约束,并且可以与原子壳结构有关。从数值上讲,基于力的局部交换势和相应的交换能与数值更优化的有效电位方法相比,可以很好地比较。总体而言,与通常的基于能量的方法相比,基于力的方法具有多个好处,并打开了一条通向数值廉价的非本地的途径,并且(在时间依赖的情况下)非绝热近似值。

We propose exchanging the energy functionals in ground-state DFT with physically equivalent exact force expressions as a new promising route towards approximations to the exchange-correlation potential and energy. In analogy to the usual energy-based procedure, we split the force difference between the interacting and auxiliary Kohn-Sham system into a Hartree, an exchange, and a correlation force. The corresponding scalar potential is obtained by solving a Poisson equation, while an additional transverse part of the force yields a vector potential. These vector potentials obey an exact constraint between the exchange and correlation contribution and can further be related to the atomic-shell structure. Numerically, the force-based local-exchange potential and the corresponding exchange energy compare well with the numerically more involved optimized effective-potential method. Overall, the force-based method has several benefits when compared to the usual energy-based approach and opens a route towards numerically inexpensive non-local and (in the time-dependent case) non-adiabatic approximations.

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