Trajectory surface hopping and ab initio multiple spawning are two commonly em ployed methods for simulating the excited-state dynamics of molecules. Trajectory surface hopping portrays the dynamics of nuclear wavepackets by a swarm of indepen dent classical trajectories, which can hop between electronic states. Ab initio multiple spawning, on the other hand, expresses nuclear wavepackets in a basis of traveling, coupled basis functions, whose number can be extended in case of coupling between electronic states. In the following, we propose to compare the performance of these two methods to describe processes involving the explicit interaction of a molecule with laser pulses. We base this comparison on the LiH molecule, as it is com...
Trajectory surface hopping (TSH) simulations are often performed in combination with active-space mu...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
Over the past decades, an important number of methods have been developed to simulate the nonadiabat...
Full multiple spawning offers an in principle exact framework for excited-state dynamics, where nucl...
Simulating the dynamics of a molecule initiated in an excited electronic state constitutes a rather ...
The nuclear dynamics of molecules following photoexcitation are fundamentally quantum dynamical proc...
Ab initio multiple spawning (AIMS) offers a reliable strategy to describe the excited-state dynamics...
Full multiple spawning (FMS) offers an exciting framework for the development of strategies to simul...
We report an implementation of the linear vibronic coupling (LVC) model within the surface hopping d...
Direct atomistic simulation of nonadiabatic molecular dynamics is a challenging goal that allows imp...
We report an implementation of the linear vibronic coupling (LVC) model within the surface hopping d...
We report an implementation of the linear vibronic coupling (LVC) model within the surface hopping d...
Upon photoexcitation by a short light pulse, molecules can reach regions of the configuration space ...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
We present a detailed study of the decoherence correction to surface hopping that was recently deriv...
Trajectory surface hopping (TSH) simulations are often performed in combination with active-space mu...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
Over the past decades, an important number of methods have been developed to simulate the nonadiabat...
Full multiple spawning offers an in principle exact framework for excited-state dynamics, where nucl...
Simulating the dynamics of a molecule initiated in an excited electronic state constitutes a rather ...
The nuclear dynamics of molecules following photoexcitation are fundamentally quantum dynamical proc...
Ab initio multiple spawning (AIMS) offers a reliable strategy to describe the excited-state dynamics...
Full multiple spawning (FMS) offers an exciting framework for the development of strategies to simul...
We report an implementation of the linear vibronic coupling (LVC) model within the surface hopping d...
Direct atomistic simulation of nonadiabatic molecular dynamics is a challenging goal that allows imp...
We report an implementation of the linear vibronic coupling (LVC) model within the surface hopping d...
We report an implementation of the linear vibronic coupling (LVC) model within the surface hopping d...
Upon photoexcitation by a short light pulse, molecules can reach regions of the configuration space ...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
We present a detailed study of the decoherence correction to surface hopping that was recently deriv...
Trajectory surface hopping (TSH) simulations are often performed in combination with active-space mu...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
Over the past decades, an important number of methods have been developed to simulate the nonadiabat...