Many chemical reactions exhibit nonadiabatic effects as a consequence of coupling between electronic states and/or interaction with light. While a fully quantum description of nonadiabatic reactions is unfeasible for most realistic molecules, a more computationally tractable approach is to combine a classical description of the nuclei with a quantum description of the electronic states. Combining the formalisms of quantum and classical dynamics is however a difficult problem for which standard methods (such as Ehrenfest dynamics and surface hopping) may be insufficient. In this article, we review a new trajectory-based approach developed in our group that is able to describe nonadiabatic dynamics with a higher accuracy than previous approac...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
Many chemical reactions exhibit nonadiabatic effects as a consequence of coupling between electronic...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
After photoexcitation, molecules can follow many different paths for electronic relaxation. Of these...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
Upon photoexcitation by a short light pulse, molecules can reach regions of the configuration space ...
After photoexcitation, molecules can follow many different paths for electronic relaxation. Of these...
We present the SHARC/COBRAMM approach to enable easy and efficient excited-state dynamics simulation...
After photoexcitation, molecules can follow many different paths for electronic relaxation. Of these...
We present the SHARC/COBRAMM approach to enable easy and efficient excited-state dynamics simulation...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Due to their very nature, ultrafast phenomena are often accompanied by the occurrence of nonadiabati...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
Many chemical reactions exhibit nonadiabatic effects as a consequence of coupling between electronic...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
After photoexcitation, molecules can follow many different paths for electronic relaxation. Of these...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
Upon photoexcitation by a short light pulse, molecules can reach regions of the configuration space ...
After photoexcitation, molecules can follow many different paths for electronic relaxation. Of these...
We present the SHARC/COBRAMM approach to enable easy and efficient excited-state dynamics simulation...
After photoexcitation, molecules can follow many different paths for electronic relaxation. Of these...
We present the SHARC/COBRAMM approach to enable easy and efficient excited-state dynamics simulation...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Due to their very nature, ultrafast phenomena are often accompanied by the occurrence of nonadiabati...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...