Photochemical reactions, which involve both the ground and excited electronic states of a molecule, can promote processes otherwise inaccessible by normal reactions. In general, photochemical reactions may be classified as adiabatic or nonadiabatic depending on whether the reaction takes place on the same adiabatic potential energy surface or not. From research over the last two decades, we now understand that many processes in nature turn out to be nonadiabatic { including charge transfer, electronic excitation quenching, and spin-forbidden transitions. The efficiency of such processes depends critically on the electron-nuclear interaction, which is quantified by the derivative coupling between the two involved states. The first part of th...
It is shown both analytically and numerically for a number of examples that both radial and rotation...
Diabatic states have a long history in chemistry, beginning with early valence bond pictures of mole...
The question of how to describe the crossing of molecular electronic states is one of the most chall...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
Electronically photoexcited dynamics are complicated because there are so many different relaxation ...
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...
We present an algorithm for efficient calculation of analytic nonadiabatic derivative couplings betw...
In molecules, electronic state transitions can occur via quantum coupling of the states. If the coup...
Nonadiabatic dynamics play an important role within electron transfer processes, excitation energy t...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
Dynamics following electron photodetachment in a complex of a chloride anion with ammonia is explore...
Derivative couplings are the essential quantities at the interface between electronic-structure calc...
It is shown both analytically and numerically for a number of examples that both radial and rotation...
Diabatic states have a long history in chemistry, beginning with early valence bond pictures of mole...
The question of how to describe the crossing of molecular electronic states is one of the most chall...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
Photochemical reactions, which involve both the ground and excited electronic states of a molecule, ...
Electronically photoexcited dynamics are complicated because there are so many different relaxation ...
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...
We present an algorithm for efficient calculation of analytic nonadiabatic derivative couplings betw...
In molecules, electronic state transitions can occur via quantum coupling of the states. If the coup...
Nonadiabatic dynamics play an important role within electron transfer processes, excitation energy t...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
Dynamics following electron photodetachment in a complex of a chloride anion with ammonia is explore...
Derivative couplings are the essential quantities at the interface between electronic-structure calc...
It is shown both analytically and numerically for a number of examples that both radial and rotation...
Diabatic states have a long history in chemistry, beginning with early valence bond pictures of mole...
The question of how to describe the crossing of molecular electronic states is one of the most chall...