The process of resonance energy transfer (RET) in a nanostructure influenced by a vicinal, nonabsorbing third body is studied within the framework of molecular quantum electrodynamics. Direct RET and the influence of neighboring matter have been studied previously, mainly for molecules. However, a complete study or unified understanding of direct and indirect RET in nanostructures with different dimensionalities is still lacking. Therefore, there is a strong need for a complete theory that models RET for the cases of quantum wells, nanowires, and quantum dots.We construct a detailed picture of excitation energy transfer in nanostructures and how it is affected by another quantum object, which includes the derivation of quantum amplitudes ba...
We have studied the influence of the local density of optical states (LDOS) on the rate and efficien...
Resonance energy transfer (RET), the transport of electronic energy from one atom or molecule to ano...
Signatures of long-lived quantum coherence in light-harvesting complexes invoked a hypothesis that t...
A fundamental theory is developed for describing laser-driven resonance energy transfer (RET) in dim...
Nonradiative resonance energy transfer (RET) provides the ability to transfer excitation energy betw...
In this work, we present a comprehensive theoretical and computational study of donor/acceptor reson...
The ability to control light-matter interactions in quantum objects opens up many avenues for new ap...
An overview is given of the molecular quantum electrodynamical (QED) theory of resonance energy tran...
We demonstrate that the rate of resonance energy transfer can be extensively controlled through an a...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
We investigate the dependence of resonance energy transfer from Wannier-Mott excitons to an organic ...
The mechanism of energy transfer between quantum dots is investigated theoretically. In order to inc...
Metal nanoparticles (MNPs) can have a dramatic effect on the electronic energy transfer (EET) betwee...
Förster-type nonradiative energy transfer (NRET) is widely used, especially utilizing nanostructures...
Förster-type nonradiative energy transfer (NRET) provides us with the ability to transfer excitation...
We have studied the influence of the local density of optical states (LDOS) on the rate and efficien...
Resonance energy transfer (RET), the transport of electronic energy from one atom or molecule to ano...
Signatures of long-lived quantum coherence in light-harvesting complexes invoked a hypothesis that t...
A fundamental theory is developed for describing laser-driven resonance energy transfer (RET) in dim...
Nonradiative resonance energy transfer (RET) provides the ability to transfer excitation energy betw...
In this work, we present a comprehensive theoretical and computational study of donor/acceptor reson...
The ability to control light-matter interactions in quantum objects opens up many avenues for new ap...
An overview is given of the molecular quantum electrodynamical (QED) theory of resonance energy tran...
We demonstrate that the rate of resonance energy transfer can be extensively controlled through an a...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
We investigate the dependence of resonance energy transfer from Wannier-Mott excitons to an organic ...
The mechanism of energy transfer between quantum dots is investigated theoretically. In order to inc...
Metal nanoparticles (MNPs) can have a dramatic effect on the electronic energy transfer (EET) betwee...
Förster-type nonradiative energy transfer (NRET) is widely used, especially utilizing nanostructures...
Förster-type nonradiative energy transfer (NRET) provides us with the ability to transfer excitation...
We have studied the influence of the local density of optical states (LDOS) on the rate and efficien...
Resonance energy transfer (RET), the transport of electronic energy from one atom or molecule to ano...
Signatures of long-lived quantum coherence in light-harvesting complexes invoked a hypothesis that t...