The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in the subpicosecond regime demands new efficient tools able to describe the quantum nature of matter at a low computational cost. By combining the power of the approximate DFTB method with the semiclassical Ehrenfest method for nuclear-electron dynamics, we have achieved a real-time time-dependent DFTB (TD-DFTB) implementation that fits such requirements. In addition to enabling the study of nuclear motion effects in photoinduced charge transfer processes, our code adds novel features to the realm of static and time-resolved computational spectroscopies. In particular, the optical properties of periodic materials such as graphene nanoribbons or t...
We present numerical simulations of femtosecond laser induced dynamics of some selected simple molec...
The combination of nonadiabatic Ehrenfest-path molecular dynamics (EMD) based on time-dependent dens...
Ziel dieser Arbeit war die Entwicklung einer allgemein anwendbaren Methode für die Simulation von ul...
The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in th...
Attosecond electron dynamics in small- and medium-sized molecules, induced by an ultrashort strong o...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
The coupled quantum dynamics of electrons and protons is ubiquitous in many dynamical processes invo...
We propose a new method of calculating electronically excited states that combines a density functio...
The real-time time-dependent density functional theory (rt-TDDFT) approach, which is complementary t...
We report a time-dependent density functional based tight-binding (TD-DFTB) scheme for the calculati...
International audienceA faster and more efficient quantum mechanical simulation method for applicati...
© 2017 American Chemical Society. We implemented a version of the decoherence-corrected fewest switc...
In this work, a theoretical and computational set of tools to study and analyze time-resolved electr...
We present numerical simulations of femtosecond laser induced dynamics of some selected simple molec...
The combination of nonadiabatic Ehrenfest-path molecular dynamics (EMD) based on time-dependent dens...
Ziel dieser Arbeit war die Entwicklung einer allgemein anwendbaren Methode für die Simulation von ul...
The increasing need to simulate the dynamics of photoexcited molecular systems and nanosystems in th...
Attosecond electron dynamics in small- and medium-sized molecules, induced by an ultrashort strong o...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
We review our recent developments in the ab initio simulation of excited-state dynamics within the f...
CONSPECTUS: Recent developments in nonadiabatic dynamics enabled ab inito simulations of complex ult...
The coupled quantum dynamics of electrons and protons is ubiquitous in many dynamical processes invo...
We propose a new method of calculating electronically excited states that combines a density functio...
The real-time time-dependent density functional theory (rt-TDDFT) approach, which is complementary t...
We report a time-dependent density functional based tight-binding (TD-DFTB) scheme for the calculati...
International audienceA faster and more efficient quantum mechanical simulation method for applicati...
© 2017 American Chemical Society. We implemented a version of the decoherence-corrected fewest switc...
In this work, a theoretical and computational set of tools to study and analyze time-resolved electr...
We present numerical simulations of femtosecond laser induced dynamics of some selected simple molec...
The combination of nonadiabatic Ehrenfest-path molecular dynamics (EMD) based on time-dependent dens...
Ziel dieser Arbeit war die Entwicklung einer allgemein anwendbaren Methode für die Simulation von ul...