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含时密度泛函理论与 Tamm-Dancoff 近似的电子激发态的分析 Hesse 矩阵。

Analytical Hessian of electronic excited states in time-dependent density functional theory with Tamm-Dancoff approximation.

机构信息

Hefei National Laboratory for Physical Sciences at Microscale, University of Science and Technology of China, Hefei 230026, Anhui, China.

出版信息

J Chem Phys. 2011 Jul 7;135(1):014113. doi: 10.1063/1.3605504.

Abstract

We present the analytical expression and computer implementation for the second-order energy derivatives of the electronic excited state with respect to the nuclear coordinates in the time-dependent density functional theory (TDDFT) with Gaussian atomic orbital basis sets. Here, the Tamm-Dancoff approximation to the full TDDFT is adopted, and therefore the formulation process of TDDFT excited-state Hessian is similar to that of configuration interaction singles (CIS) Hessian. However, due to the replacement of the Hartree-Fock exchange integrals in CIS with the exchange-correlation kernels in TDDFT, many quantitative changes in the derived equations are arisen. The replacement also causes additional technical difficulties associated with the calculation of a large number of multiple-order functional derivatives with respect to the density variables and the nuclear coordinates. Numerical tests on a set of test molecules are performed. The simulated excited-state vibrational frequencies by the analytical Hessian approach are compared with those computed by CIS and the finite-difference method. It is found that the analytical Hessian method is superior to the finite-difference method in terms of the computational accuracy and efficiency. The numerical differentiation can be difficult due to root flipping for excited states that are close in energy. TDDFT yields more exact excited-state vibrational frequencies than CIS, which usually overestimates the values.

摘要

我们提出了在含时密度泛函理论(TDDFT)中,利用高斯原子轨道基组,对电子激发态相对于核坐标的二阶能量导数的解析表达式和计算机实现。在这里,采用了全 TDDFT 的 Tamm-Dancoff 近似,因此 TDDFT 激发态 Hessian 的公式推导过程与组态相互作用单重态(CIS)Hessian 类似。然而,由于 CIS 中的 Hartree-Fock 交换积分被 TDDFT 中的交换相关核所取代,因此在推导方程中出现了许多定量变化。这种替换还导致与密度变量和核坐标的大量多阶泛函导数的计算相关的额外技术困难。我们对一组测试分子进行了数值测试。通过解析 Hessian 方法模拟的激发态振动频率与 CIS 和有限差分方法计算的结果进行了比较。结果发现,在计算精度和效率方面,解析 Hessian 方法优于有限差分方法。对于能量相近的激发态,数值微分可能会因根翻转而变得困难。TDDFT 产生的激发态振动频率比 CIS 更精确,CIS 通常会高估这些值。

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