Grid-based schemes for simulating quantum dynamics, such as the multi-configuration time-dependent Hartree (MCTDH) method, provide highly accurate predictions of the coupled nuclear and electronic dynamics in molecular systems. Such approaches provide a multi-dimensional, time-dependent view of the system wavefunction represented on a coordinate grid; in the case of non-adiabatic simulations, additional information about the state populations adds a further layer of complexity. As such, wavepacket motion on potential energy surfaces which couple many nuclear and electronic degrees-of-freedom can be extremely challenging to analyse in order to extract physical insight beyond the usual expectation-value picture. Here, we show that non-linear ...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
We present a new scheme for diabatizing electronic potential energy surfaces, for use within the rec...
We present significant algorithmic improvements to a recently-proposed direct quantum dynamics metho...
We describe a method for performing nuclear quantum dynamics calculations using standard, grid-based...
We present significant algorithmic improvements to a recently-proposed direct quantum dynamics metho...
Recent work, particularly by Cederbaum and co-workers, has identified the phenomenon of charge migra...
Quantum dynamics simulations are an important tool to evaluate molecular behaviour including the, of...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
In many processes, the impact of nuclear quantum phenomena cannot be neglected if a physically corre...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
We have recently demonstrated how potential energy surface (PES) interpola- tion methods such as ker...
The method of direct variational quantum nuclear dynamics in a basis of Gaussian wavepackets, combin...
The method of direct variational quantum nuclear dynamics in a basis of Gaussian wavepackets, combin...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
We present a new scheme for diabatizing electronic potential energy surfaces, for use within the rec...
We present significant algorithmic improvements to a recently-proposed direct quantum dynamics metho...
We describe a method for performing nuclear quantum dynamics calculations using standard, grid-based...
We present significant algorithmic improvements to a recently-proposed direct quantum dynamics metho...
Recent work, particularly by Cederbaum and co-workers, has identified the phenomenon of charge migra...
Quantum dynamics simulations are an important tool to evaluate molecular behaviour including the, of...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
The Born‐Oppenheimer approximation constitutes a cornerstone of our understanding of molecules and t...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
In many processes, the impact of nuclear quantum phenomena cannot be neglected if a physically corre...
Three methods for non-adiabatic dynamics are compared to highlight their capabilities. Multi-configu...
We have recently demonstrated how potential energy surface (PES) interpola- tion methods such as ker...
The method of direct variational quantum nuclear dynamics in a basis of Gaussian wavepackets, combin...
The method of direct variational quantum nuclear dynamics in a basis of Gaussian wavepackets, combin...
Nuclear quantum dynamics beyond the Born-Oppenheimer approximation is performed using quantum trajec...
We present a new scheme for diabatizing electronic potential energy surfaces, for use within the rec...
We present significant algorithmic improvements to a recently-proposed direct quantum dynamics metho...