We report the development of a real time propagation method for solving the time-dependent relativistic exact two-component density functional theory equations (RT-X2C-TDDFT). The method is fundamentally non-perturbative and may be employed to study nonlinear responses for heavy elements which require a relativistic Hamiltonian. We apply the method to several group 12 atoms as well as heavy-element hydrides, comparing with the extensive theoretical and experimental studies on this system, which demonstrates the correctness of our approach. Because the exact two-component Hamiltonian contains spin-orbit operators, the method is able to describe the non-zero transition moment of otherwise spin-forbidden processes in non-relativistic theory. F...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We report the development of a real time propagation method for solving the time-dependent relativis...
In this paper we derive the relativistic two-component formulation of time-dependent current-density...
Time-dependent four-component relativistic density functional theory within the linear response regi...
In this paper we derive the relativistic two-component formulation of time-dependent current-density...
An exact two-component (X2C) relativistic density functional theory in terms of atom-centered basis ...
We report the efficient implementation of a two-component time-dependent density functional theory p...
The recent time-dependent density functional theory approach within the two-component zero order rel...
An integration and assembly strategy for efficient evaluation of the exchange correlation term in re...
The relativistic density functional computational methods applicable to the calculation of systems c...
For the calculation of neutral excitations, time-dependent density functional theory (TDDFT) is an e...
We present a relativistic time-dependent equation-of-motion coupled-cluster with single and double e...
In this work, we present a linear-response formalism of the complex two-component Hartree-Fock Hamil...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We report the development of a real time propagation method for solving the time-dependent relativis...
In this paper we derive the relativistic two-component formulation of time-dependent current-density...
Time-dependent four-component relativistic density functional theory within the linear response regi...
In this paper we derive the relativistic two-component formulation of time-dependent current-density...
An exact two-component (X2C) relativistic density functional theory in terms of atom-centered basis ...
We report the efficient implementation of a two-component time-dependent density functional theory p...
The recent time-dependent density functional theory approach within the two-component zero order rel...
An integration and assembly strategy for efficient evaluation of the exchange correlation term in re...
The relativistic density functional computational methods applicable to the calculation of systems c...
For the calculation of neutral excitations, time-dependent density functional theory (TDDFT) is an e...
We present a relativistic time-dependent equation-of-motion coupled-cluster with single and double e...
In this work, we present a linear-response formalism of the complex two-component Hartree-Fock Hamil...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...
We propose a nonadiabatic time-dependent spin-density functional theory (TDSDFT) approach for studyi...