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含时密度泛函紧束缚方法的解析激发态势能

Analytical excited state forces for the time-dependent density-functional tight-binding method.

作者信息

Heringer D, Niehaus T A, Wanko M, Frauenheim Th

机构信息

General Electrics, Consumer & Industrial--Lighting, 1340 Budapest, Vaci ut 77, Hungary.

出版信息

J Comput Chem. 2007 Dec;28(16):2589-601. doi: 10.1002/jcc.20697.

DOI:10.1002/jcc.20697
PMID:17568436
Abstract

An analytical formulation for the geometrical derivatives of excitation energies within the time-dependent density-functional tight-binding (TD-DFTB) method is presented. The derivation is based on the auxiliary functional approach proposed in [Furche and Ahlrichs, J Chem Phys 2002, 117, 7433]. To validate the quality of the potential energy surfaces provided by the method, adiabatic excitation energies, excited state geometries, and harmonic vibrational frequencies were calculated for a test set of molecules in excited states of different symmetry and multiplicity. According to the results, the TD-DFTB scheme surpasses the performance of configuration interaction singles and the random phase approximation but has a lower quality than ab initio time-dependent density-functional theory. As a consequence of the special form of the approximations made in TD-DFTB, the scaling exponent of the method can be reduced to three, similar to the ground state. The low scaling prefactor and the satisfactory accuracy of the method makes TD-DFTB especially suitable for molecular dynamics simulations of dozens of atoms as well as for the computation of luminescence spectra of systems containing hundreds of atoms.

摘要

本文提出了一种基于含时密度泛函紧束缚(TD-DFTB)方法的激发能几何导数的解析公式。该推导基于[Furche和Ahlrichs,《化学物理杂志》2002年,117卷,7433页]中提出的辅助泛函方法。为了验证该方法提供的势能面的质量,对处于不同对称性和多重性激发态的一组测试分子计算了绝热激发能、激发态几何结构和谐波振动频率。根据结果,TD-DFTB方案超越了单组态相互作用和随机相位近似的性能,但质量低于从头算含时密度泛函理论。由于TD-DFTB中所作近似的特殊形式,该方法的标度指数可以降低到3,与基态情况类似。该方法的低标度前置因子和令人满意的精度使得TD-DFTB特别适用于几十个原子的分子动力学模拟以及包含数百个原子的系统的发光光谱计算。

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