Photoinduced excited-state electron and energy transfer processes are crucial in biological photoharvesting systems and organic photovoltaic devices. We discuss the construction of a diabatic vibronic Hamiltonian for the proper treatment of these processes involving the projection approach acting on both electronic wave functions and vibrational modes. In the electronic part, the wave function projection approach is used to construct the diabatic Hamiltonian in which both local excited states and charge-transfer states are included on the same footing. For the vibrational degrees of freedom, the vibronic couplings in the diabatic Hamiltonian are obtained in the basis of the pseudonormal modes localized on each monomer site by applying deloc...
The quadratic vibronic coupling model is an important computational tool for simulating photoelectro...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
Subsystem time-dependent density-functional theory (sTDDFT) making use of approximate non-additive k...
Photoinduced excited-state electron and energy transfer processes are crucial in biological photohar...
A detailed understanding of photophysical processes in molecular aggregates requires the precise cha...
Vibronic coupling between the electronic and vibrational degrees of freedom has been reported to pla...
We introduce a perturbative method for studying photoinduced electronic transitions through conical ...
We recently proposed effective normal modes for excitonically coupled aggregates which exactly trans...
We introduce a perturbative method for studying photoinduced electronic transitions through conical ...
A method for computing coupled, diabatic state representations of the lowest electronic states coupl...
Simulations of photophysical processes in biological systems are essential for understanding the rol...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
Nonadiabatic dynamical processes are ubiquitous in chemistry and biology. Such events are directly c...
The quadratic vibronic coupling model is an important computational tool for simulating photoelectro...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
Subsystem time-dependent density-functional theory (sTDDFT) making use of approximate non-additive k...
Photoinduced excited-state electron and energy transfer processes are crucial in biological photohar...
A detailed understanding of photophysical processes in molecular aggregates requires the precise cha...
Vibronic coupling between the electronic and vibrational degrees of freedom has been reported to pla...
We introduce a perturbative method for studying photoinduced electronic transitions through conical ...
We recently proposed effective normal modes for excitonically coupled aggregates which exactly trans...
We introduce a perturbative method for studying photoinduced electronic transitions through conical ...
A method for computing coupled, diabatic state representations of the lowest electronic states coupl...
Simulations of photophysical processes in biological systems are essential for understanding the rol...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
A computational strategy to analyze the dynamics of coherent electron transfer processes in bridged ...
Nonadiabatic dynamical processes are ubiquitous in chemistry and biology. Such events are directly c...
The quadratic vibronic coupling model is an important computational tool for simulating photoelectro...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
Subsystem time-dependent density-functional theory (sTDDFT) making use of approximate non-additive k...