Vieira Daniel, Capelle K, Ullrich C A
Departamento de Física e Informática, Instituto de Física de São Carlos, Universidade de São Paulo, Caixa Postal 369, São Carlos, São Paulo, 13560-970, Brazil.
Phys Chem Chem Phys. 2009 Jun 14;11(22):4647-54. doi: 10.1039/b902613d. Epub 2009 Apr 23.
The exact exchange-correlation (XC) potential in time-dependent density-functional theory (TDDFT) is known to develop steps and discontinuities upon change of the particle number in spatially confined regions or isolated subsystems. We demonstrate that the self-interaction corrected adiabatic local-density approximation for the XC potential has this property, using the example of electron loss of a model quantum well system. We then study the influence of the XC potential discontinuity in a real-time simulation of a dissociation process of an asymmetric double quantum well system, and show that it dramatically affects the population of the resulting isolated single quantum wells. This indicates the importance of a proper account of the discontinuities in TDDFT descriptions of ionization, dissociation or charge transfer processes.
在含时密度泛函理论(TDDFT)中,精确的交换关联(XC)势在空间受限区域或孤立子系统中粒子数发生变化时会出现台阶和不连续性。我们以一个模型量子阱系统的电子损失为例,证明了XC势的自相互作用校正绝热局域密度近似具有这一特性。然后,我们在一个不对称双量子阱系统解离过程的实时模拟中研究了XC势不连续性的影响,并表明它会显著影响最终形成的孤立单量子阱的布居数。这表明在TDDFT对电离、解离或电荷转移过程的描述中,正确考虑不连续性非常重要。