We study a large number of physically-plausible arrangements of chromophores, generated via a computational method involving stochastic real-space transformations of a naturally occurring `reference' structure, illustrating our methodology using the well-studied Fenna-Matthews-Olsen complex (FMO). To explore the idea that the natural structure has been tuned for efficient energy transport we use an atomic transition charge method to calculate the excitonic couplings of each generated structure and a Lindblad master equation to study the quantum transport of an exciton from a `source' to a `drain' chromophore. We find significant correlations between structure and transport efficiency: High-performing structures tend to be more compact and, ...
Chlorosomes stand out for their highly efficient excitation energy transfer (EET) in extreme low lig...
A remarkable amount of theoretical research has been carried out to elucidate the physical origins o...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...
We study a large number of physically-plausible arrangements of chromophores, generated via a comput...
We study a large number of physically-plausible arrangements of chromophores, generated via a comput...
We explore various design principles for efficient excitation energy transport in complex quantum sy...
Pigment-protein complexes (PPCs) play a central role in facilitating excitation energy transfer (EET...
Unraveling the nature of energy transport in multi-chromophoric photosynthetic complexes is essentia...
Photosynthetic pigment-protein complexes (PPCs) are a vital component of the light-harvesting machin...
In the first part of this dissertation, we investigate on the presence of quantum effects in the exc...
We used a homogeneous computational approach to derive the excitonic Hamiltonian for five light harv...
We investigate the evolution of entanglement in the Fenna-Matthew-Olson (FMO) complex based on simul...
The long-held desire - to link structure directly to function and to explain molecular mechanisms ba...
: Electronic couplings are key to understanding exciton delocalization and transport in natural and ...
As one of the most significant natural processes providing food and energy for almost all life on th...
Chlorosomes stand out for their highly efficient excitation energy transfer (EET) in extreme low lig...
A remarkable amount of theoretical research has been carried out to elucidate the physical origins o...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...
We study a large number of physically-plausible arrangements of chromophores, generated via a comput...
We study a large number of physically-plausible arrangements of chromophores, generated via a comput...
We explore various design principles for efficient excitation energy transport in complex quantum sy...
Pigment-protein complexes (PPCs) play a central role in facilitating excitation energy transfer (EET...
Unraveling the nature of energy transport in multi-chromophoric photosynthetic complexes is essentia...
Photosynthetic pigment-protein complexes (PPCs) are a vital component of the light-harvesting machin...
In the first part of this dissertation, we investigate on the presence of quantum effects in the exc...
We used a homogeneous computational approach to derive the excitonic Hamiltonian for five light harv...
We investigate the evolution of entanglement in the Fenna-Matthew-Olson (FMO) complex based on simul...
The long-held desire - to link structure directly to function and to explain molecular mechanisms ba...
: Electronic couplings are key to understanding exciton delocalization and transport in natural and ...
As one of the most significant natural processes providing food and energy for almost all life on th...
Chlorosomes stand out for their highly efficient excitation energy transfer (EET) in extreme low lig...
A remarkable amount of theoretical research has been carried out to elucidate the physical origins o...
We present a detailed theoretical study of the transfer of electronic excitation energy through the ...