International audienceThe choice of the electronic representation in on-the-fly quantum dynamics is crucial. The adiabatic representation is appealing since adiabatic states are readily available from quantum chemistry packages. The nuclear wavepackets are then expanded in a basis of Gaussian functions, which follow trajectories to explore the potential energy surfaces and approximate the potential using a local expansion of the adiabatic quantities. Nevertheless, the adiabatic representation is plagued with severe limitations when conical intersections are involved: the diagonal Born–Oppenheimer corrections (DBOCs) are non-integrable, and the geometric phase effect on the nuclear wavepackets cannot be accounted for unless a model is availa...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
ANT 2023 is a program for quasiclassical and semiclassical trajectories, both single-surface traject...
We have carried out molecular dynamics simulations of non-adiabatic processes with the help of a new...
Avoided crossings and conical intersections of adiabatic potential energy surfaces are considered. D...
The question of how to describe the crossing of molecular electronic states is one of the most chall...
This journal is © the Owner Societies 2015. Using a simple model Hamiltonian, the three correction t...
Non-adiabatic dynamics is important when the Born-Oppenheimer approximation is not valid, the perspe...
In molecular dynamics applications there is a growing interest in mixed quantum-classical models. Th...
Abstract We present a review of rigorous mathematical results about nonadiabatic transitions in mole...
A new partially linearized approximate approach to non-adiabatic quantum dynamics is derived based o...
The (time-independent) Schrödinger equation for atomistic systems is solved by using the adiabatic ...
While the treatment of conical intersections in molecular dynamics generally requires nonadiabatic a...
The study of many photochemical and photophysical problems requires that non-adiabatic effects are t...
%\begin{wrapfigure}{l}{3cm} %\includegraphics[scale=0.2]{Sergey_03.eps} %\end{wrapfigure} Non-adiab...
The quadratic vibronic coupling model is an important computational tool for simulating photoelectro...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
ANT 2023 is a program for quasiclassical and semiclassical trajectories, both single-surface traject...
We have carried out molecular dynamics simulations of non-adiabatic processes with the help of a new...
Avoided crossings and conical intersections of adiabatic potential energy surfaces are considered. D...
The question of how to describe the crossing of molecular electronic states is one of the most chall...
This journal is © the Owner Societies 2015. Using a simple model Hamiltonian, the three correction t...
Non-adiabatic dynamics is important when the Born-Oppenheimer approximation is not valid, the perspe...
In molecular dynamics applications there is a growing interest in mixed quantum-classical models. Th...
Abstract We present a review of rigorous mathematical results about nonadiabatic transitions in mole...
A new partially linearized approximate approach to non-adiabatic quantum dynamics is derived based o...
The (time-independent) Schrödinger equation for atomistic systems is solved by using the adiabatic ...
While the treatment of conical intersections in molecular dynamics generally requires nonadiabatic a...
The study of many photochemical and photophysical problems requires that non-adiabatic effects are t...
%\begin{wrapfigure}{l}{3cm} %\includegraphics[scale=0.2]{Sergey_03.eps} %\end{wrapfigure} Non-adiab...
The quadratic vibronic coupling model is an important computational tool for simulating photoelectro...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
ANT 2023 is a program for quasiclassical and semiclassical trajectories, both single-surface traject...
We have carried out molecular dynamics simulations of non-adiabatic processes with the help of a new...