We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied for non-adiabatic excited-state molecular dynamics simulations of photoinduced processes in conjugated molecules. Within our framework, the multidimensional wave-function is decomposed into a superposition of a number of Gaussian coherent states guided by Ehrenfest trajectories that are suited to clone and swap their electronic amplitudes throughout the simulation. New generalized cloning criteria are defined and tested. Because of sharp changes of the electronic states, which are common for conjugated polymers, the electronic parts of the Gaussian coherent states are represented in the Time Dependent Diabatic Basis (TDDB). The input to these s...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
We discuss the basic process of photoinduced isomerization as a building block for the design of com...
The nuclear dynamics of molecules following photoexcitation are fundamentally quantum dynamical proc...
We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied fo...
We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied fo...
Photoinduced dynamics of electronic and vibrational unidirectional energy transfer between meta-link...
The recently developed ab initio multiple cloning (AIMC) approach based on the multiconfigurational ...
We present a new algorithm for ab initio quantum nonadiabatic molecular dynamics that combines the b...
Conjugated polymers have become an important class of functional materials for a wide range of optoe...
Direct atomistic simulation of nonadiabatic molecular dynamics is a challenging goal that allows imp...
The efficiency of the intramolecular energy transfer in light harvesting dendrimers is determined by...
The efficiency of the intramolecular energy transfer in light harvesting dendrimers is determined by...
This work presents a nonadiabatic molecular dynamics study of the nonradiative decay of photoexcited...
The Multiconfigurational Ehrenfest (MCE) method is a quantum dynamics technique which allows treatme...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
We discuss the basic process of photoinduced isomerization as a building block for the design of com...
The nuclear dynamics of molecules following photoexcitation are fundamentally quantum dynamical proc...
We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied fo...
We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied fo...
Photoinduced dynamics of electronic and vibrational unidirectional energy transfer between meta-link...
The recently developed ab initio multiple cloning (AIMC) approach based on the multiconfigurational ...
We present a new algorithm for ab initio quantum nonadiabatic molecular dynamics that combines the b...
Conjugated polymers have become an important class of functional materials for a wide range of optoe...
Direct atomistic simulation of nonadiabatic molecular dynamics is a challenging goal that allows imp...
The efficiency of the intramolecular energy transfer in light harvesting dendrimers is determined by...
The efficiency of the intramolecular energy transfer in light harvesting dendrimers is determined by...
This work presents a nonadiabatic molecular dynamics study of the nonradiative decay of photoexcited...
The Multiconfigurational Ehrenfest (MCE) method is a quantum dynamics technique which allows treatme...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
We discuss the basic process of photoinduced isomerization as a building block for the design of com...
The nuclear dynamics of molecules following photoexcitation are fundamentally quantum dynamical proc...