We present a simple way to incorporate a molecule-field interaction into non-adiabatic molecular dynamics. This makes possible integrated simulation of the photoexcitaion and the ensuing photodynamics, providing accurate initial conditions that are specific for the particular wave-length and duration of the laser pulse. The proposed approach is applied to simulate the dynamics of pyrrole photodissociation. The approach is particularly convenient for the use with ab initio Multiple Cloning approach, but the idea can be implemented in other quantum dynamics methods
Mapping variable ring polymer molecular dynamics (MV-RPMD) is an approximate quantum dynamics method...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...
Photoinduced quantum molecular dynamics is numerically investigated using two different Schrödinger ...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...
The recently developed ab initio multiple cloning (AIMC) approach based on the multiconfigurational ...
We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied fo...
This thesis adresses the study and control of the photo-reactivity of molecular switches, here the p...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
Cette thèse a pour objet l’étude et le contrôle de la photo-réactivité d’interrupteurs moléculaires,...
Strong coupling of molecules to the vacuum field of micro cavities can modify the potential energy s...
The objective of this project part is to develop methods and models for the investigation of process...
A method for computing coupled, diabatic state representations of the lowest electronic states coupl...
The Floquet-based quantum-classical Liouville equation (F-QCLE) is presented as a novel theoretical ...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
Mapping variable ring polymer molecular dynamics (MV-RPMD) is an approximate quantum dynamics method...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...
Photoinduced quantum molecular dynamics is numerically investigated using two different Schrödinger ...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...
The recently developed ab initio multiple cloning (AIMC) approach based on the multiconfigurational ...
We present a new implementation of the Ab Initio Multiple Cloning (AIMC) method, which is applied fo...
This thesis adresses the study and control of the photo-reactivity of molecular switches, here the p...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
Cette thèse a pour objet l’étude et le contrôle de la photo-réactivité d’interrupteurs moléculaires,...
Strong coupling of molecules to the vacuum field of micro cavities can modify the potential energy s...
The objective of this project part is to develop methods and models for the investigation of process...
A method for computing coupled, diabatic state representations of the lowest electronic states coupl...
The Floquet-based quantum-classical Liouville equation (F-QCLE) is presented as a novel theoretical ...
We review state-of-the-art nonadiabatic molecular dynamics methods, with focus on the comparison of ...
Mapping variable ring polymer molecular dynamics (MV-RPMD) is an approximate quantum dynamics method...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...