Multiconfigurational second-order perturbation theory, both in its single-state multiconfigurational second-order perturbation theory (CASPT2) and multistate (MS-CASPT2) formulations, is used to search for minima on the crossing seams between different potential energy hypersurfaces of electronic states in several molecular systems. The performance of the procedures is tested and discussed, focusing on the problem of the nonorthogonality of the single-state perturbative solutions. In different cases the obtained structures and energy differences are compared with available complete active space self-consistent field and multireference configuration interaction solutions. Calculations on different state crossings in LiF, formaldehyde, the et...
Author Institution: Department of Chemistry, Temple University, Philadelphia, PA 19122Three-state co...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
Multiconfigurational second-order perturbation theory, both in its single-state multiconfigurational...
Crossings between states involve complex electronic structures, making the accurate characterization...
Quantum-chemical computational methods are benchmarked for their ability to describe conical interse...
This thesis concerns the theoretical development and implementation of a second-oider description of...
We demonstrate that the recently developed extended multi-state complete active space second-order ...
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 ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
Conical intersections (CIs) of ethylene have been successfully determined using spin-flip density fu...
Author Institution: Department of Chemistry, Temple University, Philadelphia, PA 19122Three-state co...
Author Institution: Department of Chemistry, Temple University, Philadelphia, PA 19122Three-state co...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
Multiconfigurational second-order perturbation theory, both in its single-state multiconfigurational...
Crossings between states involve complex electronic structures, making the accurate characterization...
Quantum-chemical computational methods are benchmarked for their ability to describe conical interse...
This thesis concerns the theoretical development and implementation of a second-oider description of...
We demonstrate that the recently developed extended multi-state complete active space second-order ...
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 ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
WOS:000342844100027International audienceQuantum-chemical computational methods are benchmarked for ...
Conical intersections (CIs) of ethylene have been successfully determined using spin-flip density fu...
Author Institution: Department of Chemistry, Temple University, Philadelphia, PA 19122Three-state co...
Author Institution: Department of Chemistry, Temple University, Philadelphia, PA 19122Three-state co...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...
We report results of the application of a fully ab initio approach for simulating time-resolved mole...