Surface hopping trajectory simulations with spin-orbit and dynamical couplings
Abstract
In this paper we consider the inclusion of the spin-orbit interaction in surface hopping molecular dynamics simulations to take into account spin forbidden transitions. Two alternative approaches are examined. The spin-diabatic one makes use of eigenstates of the spin-free electronic Hamiltonian and of hat{S}^2 and is commonly applied when the spin-orbit coupling is weak. We point out some inconsistencies of this approach, especially important when more than two spin multiplets are coupled. The spin-adiabatic approach is based on the eigenstates of the total electronic Hamiltonian including the spin-orbit coupling. Advantages and drawbacks of both strategies are discussed and illustrated with the help of two model systems.
- Publication:
-
Journal of Chemical Physics
- Pub Date:
- December 2012
- DOI:
- 10.1063/1.4707737
- Bibcode:
- 2012JChPh.137vA501G
- Keywords:
-
- molecular dynamics method;
- nonradiative transitions;
- spin-orbit interactions;
- 33.50.Hv;
- 31.15.xv;
- Radiationless transitions quenching;
- Molecular dynamics and other numerical methods