Resonance energy transfer (RET) is a complex phenomenon where energy is transferred between two non-equivalent molecules. In the Förster picture, that applies to the weak coupling regime, RET occurs from the energy donor molecule in the relaxed excited state towards the acceptor, in an energy-conserving process. However, energy dissipation is crucial for a more general picture of RET that also applies to the strong coupling regime. Here we present a dynamical, non-adiabatic model for RET also accounting for energy relaxation. We exploit the essential state formalism to set up a model for the RET pair that yields an accurate picture of the relevant physics, accounting for just few electronic states and a single coupled vibrational coordinate...
Resonant energy transfer by dipolar coupling is generally regarded as occurring through two distinct...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...
Resonance energy transfer (RET) is a complex phenomenon where energy is transferred between two none...
A multiscale approach to the dynamics of resonant energy transfer (RET) is presented, combining DFT ...
Resonanceenergy transfer (RET) is the principal mechanism for the intermolecular or intramolecular r...
Resonance energy transfer, also known as Förster- or fluorescence- resonance energy transfer, or ele...
Resonance energy transfer is a spectroscopic process whose relevance in all major areas of science i...
Resonance energy transfer (RET), the transport of electronic energy from one atom or molecule to ano...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...
Electrostatic intermolecular interactions lie at the heart of both the Förster model for resonance ...
Resonance Energy Transfer (RET), at the heart of photosynthesis, supports life on earth, but also gu...
Resonance energy transfer involving two identical donors and one acceptor is modelled by quantum ele...
Resonance energy transfer (RET), at the heart of photosynthesis, supports life on earth, but also gu...
We theoretically analyze the excitation energy transfer between two closely spaced linear molecular ...
Resonant energy transfer by dipolar coupling is generally regarded as occurring through two distinct...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...
Resonance energy transfer (RET) is a complex phenomenon where energy is transferred between two none...
A multiscale approach to the dynamics of resonant energy transfer (RET) is presented, combining DFT ...
Resonanceenergy transfer (RET) is the principal mechanism for the intermolecular or intramolecular r...
Resonance energy transfer, also known as Förster- or fluorescence- resonance energy transfer, or ele...
Resonance energy transfer is a spectroscopic process whose relevance in all major areas of science i...
Resonance energy transfer (RET), the transport of electronic energy from one atom or molecule to ano...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...
Electrostatic intermolecular interactions lie at the heart of both the Förster model for resonance ...
Resonance Energy Transfer (RET), at the heart of photosynthesis, supports life on earth, but also gu...
Resonance energy transfer involving two identical donors and one acceptor is modelled by quantum ele...
Resonance energy transfer (RET), at the heart of photosynthesis, supports life on earth, but also gu...
We theoretically analyze the excitation energy transfer between two closely spaced linear molecular ...
Resonant energy transfer by dipolar coupling is generally regarded as occurring through two distinct...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...