Forster energy transfer from an excited semiconductor quantum dot to the surrounding organic material is considered. While earlier only the calculations for the lowest excited state of the dot were performed and only the limiting cases of strong and weak confinement were analyzed, in this work we present the results for the crossover region, obtained from the variational calculation. We also consider the transfer from the higher excited states, which may be relevant if the carrier relaxation in the dot is inhibited due to the discreteness of the states. We employ a microscopic quantum mechanical description of the Wannier-Mott exciton in the quantum dot and a macroscopic description of the organic medium. According to our calculations, for ...
Recent experiments show evidence for long-lived electronic coherence in several photosynthetic compl...
In this review, we discuss investigations of electronic excitation energy transfer in conjugated org...
Semiconductor quantum dot (QD) assemblies are promising systems for light harvesting and energy con...
Forster energy transfer from an excited semiconductor quantum dot to the surrounding organic materia...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
This article highlights some physical studies on the relaxation dynamics and Förster resonance energ...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
We consider Wannier-Mott exciton in a semiconductor quantum well coupled via Coulomb interaction to ...
Forster theory of energy transfer is applied in diluted systems, and yet it remains unknown if it ca...
Photoexcited charge transfer is essential to light energy conversion processes in photosynthesis and...
The theoretical study of open quantum systems strongly coupled to a vibrational environment remains ...
We derive a quantum-kinetic description of phonon-assisted Förster transfer between two coupled quan...
We give three methods for entangling quantum states in quantum dots. We do this by showing how to ta...
Recent experiments show evidence for long-lived electronic coherence in several photosynthetic compl...
In this review, we discuss investigations of electronic excitation energy transfer in conjugated org...
Semiconductor quantum dot (QD) assemblies are promising systems for light harvesting and energy con...
Forster energy transfer from an excited semiconductor quantum dot to the surrounding organic materia...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
We predict an efficient electronic energy transfer from an excited semiconductor quantum well to opt...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
This article highlights some physical studies on the relaxation dynamics and Förster resonance energ...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
We consider Wannier-Mott exciton in a semiconductor quantum well coupled via Coulomb interaction to ...
Forster theory of energy transfer is applied in diluted systems, and yet it remains unknown if it ca...
Photoexcited charge transfer is essential to light energy conversion processes in photosynthesis and...
The theoretical study of open quantum systems strongly coupled to a vibrational environment remains ...
We derive a quantum-kinetic description of phonon-assisted Förster transfer between two coupled quan...
We give three methods for entangling quantum states in quantum dots. We do this by showing how to ta...
Recent experiments show evidence for long-lived electronic coherence in several photosynthetic compl...
In this review, we discuss investigations of electronic excitation energy transfer in conjugated org...
Semiconductor quantum dot (QD) assemblies are promising systems for light harvesting and energy con...