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含时密度泛函理论中的自电离共振

Autoionizing resonances in time-dependent density functional theory.

作者信息

Krueger August J, Maitra Neepa T

机构信息

Department of Physics and Astronomy, Hunter College and City University of New York, 695 Park Avenue, New York, NY 10065, USA.

出版信息

Phys Chem Chem Phys. 2009 Jun 14;11(22):4655-63. doi: 10.1039/b902787d. Epub 2009 Apr 23.

Abstract

Autoionizing resonances that arise from the interaction of a bound single-excitation with the continuum can be accurately captured with the presently used approximations in time-dependent density functional theory (TDDFT), but those arising from a bound double excitation cannot. In the former case, we explain how an adiabatic kernel, which has no frequency-dependence, can yet generate the strongly frequency-dependent resonant structures in the interacting response function, not present in the Kohn-Sham response function. In the case of the bound double-excitation, we explain that a strongly frequency-dependent kernel is needed, and derive one as an a posteriori correction to the usual adiabatic approximations in TDDFT. Our approximation becomes exact for an isolated resonance in the limit of weak interaction, where one discrete state interacts with one continuum. We derive a "Fano TDDFT kernel" that reproduces the Fano lineshape within the TDDFT formalism, and also a dressed kernel, that operates on top of an adiabatic approximation. We illustrate our results on a simple model system.

摘要

由束缚单激发与连续态相互作用产生的自电离共振可以用含时密度泛函理论(TDDFT)中目前使用的近似方法精确捕捉,但由束缚双激发产生的自电离共振则不能。在前一种情况下,我们解释了一个没有频率依赖性的绝热核如何能够在相互作用响应函数中产生强频率依赖性的共振结构,而这种结构在科恩-沈(Kohn-Sham)响应函数中并不存在。在束缚双激发的情况下,我们解释了需要一个强频率依赖性的核,并推导了一个作为TDDFT中通常绝热近似的后验修正。在弱相互作用极限下,对于一个孤立共振,我们的近似变得精确,此时一个离散态与一个连续态相互作用。我们推导了一个“费诺TDDFT核”,它在TDDFT形式体系内再现了费诺线形,还推导了一个在绝热近似之上起作用的修饰核。我们在一个简单模型系统上展示了我们的结果。

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