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含时密度泛函理论中的生成坐标方法:简化记忆

Generator coordinate method in time-dependent density-functional theory: memory made simple.

作者信息

Orestes E, Capelle K, da Silva A B F, Ullrich C A

机构信息

Departamento de Química e Física Molecular, Instituto de Química de São Carlos, Universidade de São Paulo, Caixa Postal 780, São Carlos, São Paulo 13560-970, Brazil.

出版信息

J Chem Phys. 2007 Sep 28;127(12):124101. doi: 10.1063/1.2768368.

Abstract

The generator coordinate (GC) method is a variational approach to the quantum many-body problem in which interacting many-body wave functions are constructed as superpositions of (generally nonorthogonal) eigenstates of auxiliary Hamiltonians containing a deformation parameter. This paper presents a time-dependent extension of the GC method as a new approach to improve existing approximations of the exchange-correlation (XC) potential in time-dependent density-functional theory (TDDFT). The time-dependent GC method is shown to be a conceptually and computationally simple tool to build memory effects into any existing adiabatic XC potential. As an illustration, the method is applied to driven parametric oscillations of two interacting electrons in a harmonic potential (Hooke's atom). It is demonstrated that a proper choice of time-dependent generator coordinates in conjunction with the adiabatic local-density approximation reproduces the exact linear and nonlinear two-electron dynamics quite accurately, including features associated with double excitations that cannot be captured by TDDFT in the adiabatic approximation.

摘要

生成坐标(GC)方法是一种处理量子多体问题的变分方法,其中相互作用的多体波函数被构建为包含一个形变参数的辅助哈密顿量(通常是非正交的)本征态的叠加。本文提出了GC方法的含时扩展,作为一种改进含时密度泛函理论(TDDFT)中交换关联(XC)势现有近似的新方法。含时GC方法被证明是一种在概念和计算上都很简单的工具,可将记忆效应纳入任何现有的绝热XC势中。作为一个示例,该方法被应用于谐波势(胡克原子)中两个相互作用电子的驱动参量振荡。结果表明,结合绝热局域密度近似,恰当地选择含时生成坐标能够相当准确地重现精确的线性和非线性双电子动力学,包括绝热近似下TDDFT无法捕捉的与双激发相关的特征。

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