We compare various theoretical approaches that are frequently used for modeling the excitation dynamics in photosynthetic light-harvesting complexes. As an example, we calculate the dynamics in the major light-harvesting complex from higher plants using the standard Redfield theory, the coherent modified Redfield theory combined with the generalized Forster theory, and the scaled hierarchical equation of motion (HEOM). The modified Redfield and coherent modified Redfield theories predict unrealistically fast transfers between weakly coupled and isoenergetic sites due to the secular character of these approaches. This shortcoming can be excluded by the artificial breaking of exciton mixing between these sites and invoking a generalized Forst...
As one of the most significant natural processes providing food and energy for almost all life on th...
We have modeled energy-transfer dynamics in the peripheral plant light-harvesting complex LHCII usin...
We have modeled energy-transfer dynamics in the peripheral plant light-harvesting complex LHCII usin
We overview experimental and theoretical studies of energy transfer in the photosynthetic light-harv...
We perform a quantitative comparison of different energy transfer theories, i.e. modified Redfield, ...
We have evaluated excitation energy transfer rates in photosyntetic complexes using the exact HEOM m...
AbstractIn order to bridge the gap between the crystal structure of photosynthetic pigment-protein c...
We model the energy transfer dynamics in the Lhca4 peripheral antenna of photosystem I from higher p...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
We challenge the commonly held view that Bloch-Redfield equations are a less powerful tool than phe-...
Quantum biology is a relatively new research area which investigates the rules that quantum mechanic...
I investigate the dynamics of multi-state central systems coupled bilinearly to an external oscilla...
As one of the most significant natural processes providing food and energy for almost all life on th...
We have modeled energy-transfer dynamics in the peripheral plant light-harvesting complex LHCII usin...
We have modeled energy-transfer dynamics in the peripheral plant light-harvesting complex LHCII usin
We overview experimental and theoretical studies of energy transfer in the photosynthetic light-harv...
We perform a quantitative comparison of different energy transfer theories, i.e. modified Redfield, ...
We have evaluated excitation energy transfer rates in photosyntetic complexes using the exact HEOM m...
AbstractIn order to bridge the gap between the crystal structure of photosynthetic pigment-protein c...
We model the energy transfer dynamics in the Lhca4 peripheral antenna of photosystem I from higher p...
A master equation derived from non-Markovian quantum state diffusion is used to calculate the excita...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...
We investigate photosynthetic excitation energy transfer (EET) in the presence of realistic electron...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
We challenge the commonly held view that Bloch-Redfield equations are a less powerful tool than phe-...
Quantum biology is a relatively new research area which investigates the rules that quantum mechanic...
I investigate the dynamics of multi-state central systems coupled bilinearly to an external oscilla...
As one of the most significant natural processes providing food and energy for almost all life on th...
We have modeled energy-transfer dynamics in the peripheral plant light-harvesting complex LHCII usin...
We have modeled energy-transfer dynamics in the peripheral plant light-harvesting complex LHCII usin