DIRAC is a freely distributed general-purpose program system for one-, two-, and four-component relativistic molecular calculations at the level of Hartree–Fock, Kohn–Sham (including range-separated theory), multiconfigurational self-consistent-field, multireference configuration interaction, electron propagator, and various flavors of coupled cluster theory. At the self-consistent-field level, a highly original scheme, based on quaternion algebra, is implemented for the treatment of both spatial and time reversal symmetry. DIRAC features a very general module for the calculation of molecular properties that to a large extent may be defined by the user and further analyzed through a powerful visualization module. It allows for the inclusion...
We report the implementation of effective quantum electrodynamics (QED) potentials for all-electron ...
National audienceHeavy elements (Z > 31) are widely used in technological applications (catalysts, s...
The theoretical foundations of relativistic electronic structure theory within quantum electrodynami...
DIRAC is a freely distributed general-purpose program system for one-, two-, and four-component rela...
International audienceA symmetry scheme based on the irreducible corepresentations of the full symme...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
This book presents a unified approach to modern relativistic theory of the electronic structure of a...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
We report the development of a general order relativistic coupled-cluster (CC) code. Our implementat...
This chapter is a review of some methods used for the computation of relativistic atomic and molecul...
In this article the Dirac-Fock-CI method is reviewed. The MOLFDIR program suite that was developed f...
In this paper, we report reimplementation of the core algorithms of relativistic coupled cluster the...
We report the implementation of effective quantum electrodynamics (QED) potentials for all-electron ...
National audienceHeavy elements (Z > 31) are widely used in technological applications (catalysts, s...
The theoretical foundations of relativistic electronic structure theory within quantum electrodynami...
DIRAC is a freely distributed general-purpose program system for one-, two-, and four-component rela...
International audienceA symmetry scheme based on the irreducible corepresentations of the full symme...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
This book presents a unified approach to modern relativistic theory of the electronic structure of a...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
DIRAC: Program for Atomic and Molecular Direct Iterative Relativistic All-electron Calculations. Pr...
We report the development of a general order relativistic coupled-cluster (CC) code. Our implementat...
This chapter is a review of some methods used for the computation of relativistic atomic and molecul...
In this article the Dirac-Fock-CI method is reviewed. The MOLFDIR program suite that was developed f...
In this paper, we report reimplementation of the core algorithms of relativistic coupled cluster the...
We report the implementation of effective quantum electrodynamics (QED) potentials for all-electron ...
National audienceHeavy elements (Z > 31) are widely used in technological applications (catalysts, s...
The theoretical foundations of relativistic electronic structure theory within quantum electrodynami...