An accurate approach for computing intermolecular and intrachromophore contributions to spectral densities to describe the electronic–nuclear interactions relevant for modeling excitation energy transfer processes in light harvesting systems is presented. The approach is based on molecular dynamics (MD) calculations of classical correlation functions of long-range contributions to excitation energy fluctuations and a separate harmonic analysis and single-point gradient quantum calculations for electron–intrachromophore vibrational couplings. A simple model is also presented that enables detailed analysis of the shortcomings of standard MD-based excitation energy fluctuation correlation function approaches. The method introduced here avoids ...
Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...
An accurate approach for computing intermolecular and intrachromophore contributions to spectral den...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
ABSTRACT: We report a method for the structure-based calculation of the spectral density of the pigm...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
We report a method for the structure-based calculation of the spectral density of the pigment–protei...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
A theory for calculating time– and frequency–domain optical spectra of pigment–protein complexes is ...
Quantum biology is a relatively new research area which investigates the rules that quantum mechanic...
The studies presented in this thesis explore electronic energy transfer (EET) in light-harvesting an...
The studies presented in this thesis explore electronic energy transfer (EET) in light-harvesting an...
Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...
An accurate approach for computing intermolecular and intrachromophore contributions to spectral den...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
ABSTRACT: We report a method for the structure-based calculation of the spectral density of the pigm...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
We report a method for the structure-based calculation of the spectral density of the pigment–protei...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
A theory for calculating time– and frequency–domain optical spectra of pigment–protein complexes is ...
Quantum biology is a relatively new research area which investigates the rules that quantum mechanic...
The studies presented in this thesis explore electronic energy transfer (EET) in light-harvesting an...
The studies presented in this thesis explore electronic energy transfer (EET) in light-harvesting an...
Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...