Quantum-chemical computational methods are benchmarked for their ability to describe conical intersections in a series of organic molecules and models of biological chromophores. Reference results for the geometries, relative energies, and branching planes of conical intersections are obtained using ab initio multireference configuration interaction with single and double excitations (MRCISD). They are compared with the results from more approximate methods, namely, the state-interaction state-averaged restricted ensemble-referenced Kohn-Sham method, spin-flip time-dependent density functional theory, and a semiempirical MRCISD approach using an orthogonalization-corrected model. It is demonstrated that these approximate methods reproduce t...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
Quantum-chemical computational methods are benchmarked for their ability to describe conical interse...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
A number of commonly available density functionals have been tested for their ability to describe th...
ABSTRACT: A number of commonly available density functionals have been tested for their ability to d...
Multiconfigurational second-order perturbation theory, both in its single-state multiconfigurational...
As a minimal model of the chromophore of rhodopsin proteins, the penta-2,4-dieniminium cation (PSB3)...
The motion of electrons and nuclei in photochemical events often involves conical intersections, or ...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
Quantum-chemical computational methods are benchmarked for their ability to describe conical interse...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
A number of commonly available density functionals have been tested for their ability to describe th...
ABSTRACT: A number of commonly available density functionals have been tested for their ability to d...
Multiconfigurational second-order perturbation theory, both in its single-state multiconfigurational...
As a minimal model of the chromophore of rhodopsin proteins, the penta-2,4-dieniminium cation (PSB3)...
The motion of electrons and nuclei in photochemical events often involves conical intersections, or ...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
Conical intersections are points where adiabatic potential energy surfaces cross. The interstate cou...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...