We propose to measure nonadiabaticity of molecular quantum dynamics rigorously with the quantum fidelity between the Born-Oppenheimer and fully nonadiabatic dynamics. It is shown that this measure of nonadiabaticity applies in situations where other criteria, such as the energy gap criterion or the extent of population transfer, fail. We further propose to estimate this quantum fidelity efficiently with a generalization of the dephasing representation to multiple surfaces. Two variants of the multiple-surface dephasing representation (MSDR) are introduced, in which the nuclei are propagated either with the fewest-switches surface hopping or with the locally mean field dynamics (LMFD). The LMFD can be interpreted as the Ehrenfest dynamics of...
We present an ab initio algorithm for quantum dynamics simulations that reformulates the traditional...
The study of many photochemical and photophysical problems requires that non-adiabatic effects are t...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
Performing molecular dynamics in electronically excited states requires the inclusion of nonadiabati...
Description of correct electron-nuclear couplings is crucial in modeling of nonadiabatic dynamics. W...
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...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
An extension of the nonadiabatic quantum molecular dynamics approach is presented to account for ele...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
Mixed-quantum-classical molecular dynamics simulation implies an effective quantum measurement on th...
Description of correct electron–nuclear couplings is crucial in modeling of nonadiabatic dynamics. W...
The key factors that distinguish algorithms for nonadiabatic mixed quantum/classical (MQC) simulatio...
We present an ab initio algorithm for quantum dynamics simulations that reformulates the traditional...
The study of many photochemical and photophysical problems requires that non-adiabatic effects are t...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
Performing molecular dynamics in electronically excited states requires the inclusion of nonadiabati...
Description of correct electron-nuclear couplings is crucial in modeling of nonadiabatic dynamics. W...
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...
Dynamics based on quantum trajectories with approximate quantum potential is generalized to nonadiab...
An extension of the nonadiabatic quantum molecular dynamics approach is presented to account for ele...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
Mixed-quantum-classical molecular dynamics simulation implies an effective quantum measurement on th...
Description of correct electron–nuclear couplings is crucial in modeling of nonadiabatic dynamics. W...
The key factors that distinguish algorithms for nonadiabatic mixed quantum/classical (MQC) simulatio...
We present an ab initio algorithm for quantum dynamics simulations that reformulates the traditional...
The study of many photochemical and photophysical problems requires that non-adiabatic effects are t...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...