In this work, we present a linear-response formalism of the complex two-component Hartree-Fock Hamiltonian that includes relativistic effects within the Douglas-Kroll-Hess and the Exact-Two-Component frameworks. The method includes both scalar and spin relativistic effects in the variational description of electronic ground and excited states, although it neglects the picture-change and explicit spin-orbit contributions arising from the two-electron interaction. An efficient direct formalism of solving the complex two-component response function is also presented in this work. The presence of spin-orbit couplings in the Hamiltonian and the two-component nature of the wave function and Fock operator allows the computation of excited-state ze...
International audienceBased on self-consistent field (SCF) atomic mean-field (amf) quantities, we pr...
We report an approach for determination of zero-field splitting parameters from four-component relat...
The triplet contribution is computed to the 1 and 2 $^1S^\text{e}_0$ states of the He atom, to the $...
In this work, we present a linear-response formalism of the complex two-component Hartree-Fock Hamil...
Abstract: The coupled cluster based linear response theory which is applicable to the direct calcula...
We report the development of a real time propagation method for solving the time-dependent relativis...
It is generally acknowledged that the inclusion of relativistic effects is crucial for the theoretic...
With the recent introduction of the particle-particle random-phase and Tamm-Dancoff approximations t...
The idea for separating the algebraic exact two-component (X2C) relativistic Hamiltonians into spin-...
In this paper we derive the relativistic two-component formulation of time-dependent current-density...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
The spin-separated exact two-component (X2C) relativistic Hamiltonian [sf-X2C+ so-DKHn, J. Chem. Phy...
ABSTRACT: A series of nonsingular two-component relativistic Hamiltonians is derived from the Dirac ...
A self-consistent-field (SCF) program for the calculation of atomic energies and wave functions defi...
In this paper we present the implementation of the two-component scaled zeroth-order regular approxi...
International audienceBased on self-consistent field (SCF) atomic mean-field (amf) quantities, we pr...
We report an approach for determination of zero-field splitting parameters from four-component relat...
The triplet contribution is computed to the 1 and 2 $^1S^\text{e}_0$ states of the He atom, to the $...
In this work, we present a linear-response formalism of the complex two-component Hartree-Fock Hamil...
Abstract: The coupled cluster based linear response theory which is applicable to the direct calcula...
We report the development of a real time propagation method for solving the time-dependent relativis...
It is generally acknowledged that the inclusion of relativistic effects is crucial for the theoretic...
With the recent introduction of the particle-particle random-phase and Tamm-Dancoff approximations t...
The idea for separating the algebraic exact two-component (X2C) relativistic Hamiltonians into spin-...
In this paper we derive the relativistic two-component formulation of time-dependent current-density...
The recently proposed spin-adapted time-dependent density functional theory (S-TD-DFT) is extended t...
The spin-separated exact two-component (X2C) relativistic Hamiltonian [sf-X2C+ so-DKHn, J. Chem. Phy...
ABSTRACT: A series of nonsingular two-component relativistic Hamiltonians is derived from the Dirac ...
A self-consistent-field (SCF) program for the calculation of atomic energies and wave functions defi...
In this paper we present the implementation of the two-component scaled zeroth-order regular approxi...
International audienceBased on self-consistent field (SCF) atomic mean-field (amf) quantities, we pr...
We report an approach for determination of zero-field splitting parameters from four-component relat...
The triplet contribution is computed to the 1 and 2 $^1S^\text{e}_0$ states of the He atom, to the $...