Department of Chemistry, University of Zurich, Zurich 8057, Switzerland.
J Chem Theory Comput. 2022 Sep 13;18(9):5513-5526. doi: 10.1021/acs.jctc.2c00644. Epub 2022 Aug 30.
A velocity and symmetric gauge implementation for real-time time-dependent density functional theory (RT-TDDFT) in the CP2K package using a Gaussian and plane wave approach is presented, including the explicit gauge-transformed contributions due to the nonlocal part of pseudopotentials. Absorption spectra of gas-phase α-pinene are calculated in length and velocity gauges in the long-wavelength approximation for the application of a δ pulse in linear and full order. The velocity gauge implementation is also applied to a solvated uracil molecule to showcase its use within periodic boundary conditions (PBC). For the calculation of the expectation value of the electric dipole moment in PBC, both the velocity representation and the modern theory of polarization give equivalent absorption spectra if a distributed reference point is used for the nonlocal term of the velocity operator. The discussion of linear response theory takes place in a unified framework in terms of linear response functions in propagator notation, distinguishing the parts of the linear response functions associated with perturbation and response. To further investigate gauge dependence, electric circular dichroism (ECD) spectra of α-pinene were calculated either as magnetic response to an electric field perturbation, in length or velocity gauge, or as electric response to a magnetic field perturbation in the symmetric gauge. Both approaches, electric and magnetic perturbations, have been found to yield equivalent ECD spectra.
本文介绍了 CP2K 软件包中使用高斯和平面波方法实现实时含时密度泛函理论(RT-TDDFT)的速度规范和对称规范,包括由于赝势的非局域部分而产生的显式规范变换贡献。在长波近似下,针对线性和全阶 δ 脉冲应用,计算了气相 α-蒎烯的吸收光谱在长度和速度规范中的结果。速度规范的实现也应用于溶剂化尿嘧啶分子,以展示其在周期性边界条件(PBC)中的使用。对于 PBC 中电偶极矩的期望值计算,如果将分布式参考点用于速度算符的非局域项,则速度表示和现代极化理论给出了等效的吸收光谱。在线性响应理论的讨论中,以传播子记法中的线性响应函数为统一框架,区分了与微扰和响应相关的线性响应函数部分。为了进一步研究规范依赖性,计算了 α-蒎烯的电圆二色性(ECD)光谱,方法是将电场微扰的磁响应或长度或速度规范中的电响应,或者磁场微扰的对称规范中的电响应。这两种方法,电场和磁场微扰,都得到了等效的 ECD 光谱。