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实时含时密度泛函理论中的科恩-沈分解:一种分析等离子体激发的有效工具。

Kohn-Sham Decomposition in Real-Time Time-Dependent Density-Functional Theory: An Efficient Tool for Analyzing Plasmonic Excitations.

作者信息

Rossi Tuomas P, Kuisma Mikael, Puska Martti J, Nieminen Risto M, Erhart Paul

机构信息

COMP Centre of Excellence, Department of Applied Physics, Aalto University , P.O. Box 11100, FI-00076 Aalto, Finland.

Department of Physics, Chalmers University of Technology , SE-412 96 Gothenburg, Sweden.

出版信息

J Chem Theory Comput. 2017 Oct 10;13(10):4779-4790. doi: 10.1021/acs.jctc.7b00589. Epub 2017 Sep 21.

Abstract

Electronic excitations can be efficiently analyzed in terms of the underlying Kohn-Sham (KS) electron-hole transitions. While such a decomposition is readily available in the linear-response time-dependent density-functional theory (TDDFT) approaches based on the Casida equations, a comparable analysis is less commonly conducted within the real-time-propagation TDDFT (RT-TDDFT). To improve this situation, we present here an implementation of a KS decomposition tool within the local-basis-set RT-TDDFT code in the free GPAW package. Our implementation is based on postprocessing of data that is readily available during time propagation, which is important for retaining the efficiency of the underlying RT-TDDFT to large systems. After benchmarking our implementation on small benzene derivatives by explicitly reconstructing the Casida eigenvectors from RT-TDDFT, we demonstrate the performance of the method by analyzing the plasmon resonances of icosahedral silver nanoparticles up to Ag. The method provides a clear description of the splitting of the plasmon in small nanoparticles due to individual single-electron transitions as well as the formation of a distinct d-electron-screened plasmon resonance in larger nanoparticles.

摘要

电子激发可以根据潜在的科恩-沙姆(KS)电子-空穴跃迁进行有效分析。虽然这种分解在基于卡西达方程的线性响应含时密度泛函理论(TDDFT)方法中很容易得到,但在实时传播TDDFT(RT-TDDFT)中进行类似分析的情况较少。为改善这种情况,我们在此展示了在免费的GPAW软件包中的局域基组RT-TDDFT代码内实现KS分解工具。我们的实现基于对时间传播过程中容易获得的数据进行后处理,这对于保持底层RT-TDDFT对大型系统的效率很重要。通过从RT-TDDFT显式重构卡西达本征向量对小苯衍生物进行基准测试后,我们通过分析高达Ag的二十面体银纳米颗粒的等离子体共振来展示该方法的性能。该方法清晰地描述了小纳米颗粒中等离子体由于单个单电子跃迁而产生的分裂,以及大纳米颗粒中形成的独特的d电子屏蔽等离子体共振。

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