Recently, it has been shown that quantum coherence appears in energy transfers of various photosynthetic light-harvesting complexes at from cryogenic to even room temperatures. Because the photosynthetic systems are inherently complex, these findings have subsequently interested many researchers in the field of both experiment and theory. From the theoretical part, simplified dynamics or semiclassical approaches have been widely used. In these approaches, the quantum-classical Liouville equation (QCLE) is the fundamental starting point. Toward the semiclassical scheme, approximations are needed to simplify the equations of motion of various degrees of freedom. Here, we have adopted the Poisson bracket mapping equation (PBME) as an approxima...
Excitation energy transfer in a photosynthetic FMO complex has been simulated using the stochastic S...
All life on Earth relies on the ability of photosynthetic organisms to efficiently harvest and trap ...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
Recently, many researches have shown that even photosynthetic light-harvesting pigment-protein compl...
Recent two-dimensional photon-echo experiments suggest that excitation energy transfer in light harv...
Quantum mechanics often participates importantly in the dynamics of biological systems. Understandin...
We present results of calculations [1] that employ a new mixed quantum classical iterative density m...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...
Temperature-dependent fluctuations of both site energies and electronic couplings are known to affec...
The fundamental physical mechanisms of energy transfer in photosynthetic complexes is not yet fully ...
AbstractPhotosynthetic light harvesting is a paradigmatic example for quantum effects in biology. In...
The studies presented in this thesis explore electronic energy transfer (EET) in light-harvesting an...
Temperature-dependent fluctuations of both site energies and electronic couplings are known to affec...
Observations of long-lived coherences in photosynthetic light-harvesting complexes utilize short pul...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
Excitation energy transfer in a photosynthetic FMO complex has been simulated using the stochastic S...
All life on Earth relies on the ability of photosynthetic organisms to efficiently harvest and trap ...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
Recently, many researches have shown that even photosynthetic light-harvesting pigment-protein compl...
Recent two-dimensional photon-echo experiments suggest that excitation energy transfer in light harv...
Quantum mechanics often participates importantly in the dynamics of biological systems. Understandin...
We present results of calculations [1] that employ a new mixed quantum classical iterative density m...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...
Temperature-dependent fluctuations of both site energies and electronic couplings are known to affec...
The fundamental physical mechanisms of energy transfer in photosynthetic complexes is not yet fully ...
AbstractPhotosynthetic light harvesting is a paradigmatic example for quantum effects in biology. In...
The studies presented in this thesis explore electronic energy transfer (EET) in light-harvesting an...
Temperature-dependent fluctuations of both site energies and electronic couplings are known to affec...
Observations of long-lived coherences in photosynthetic light-harvesting complexes utilize short pul...
AbstractA remarkable amount of theoretical research has been carried out to elucidate the physical o...
Excitation energy transfer in a photosynthetic FMO complex has been simulated using the stochastic S...
All life on Earth relies on the ability of photosynthetic organisms to efficiently harvest and trap ...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...