The problem of Forster resonance energy transfer (FRET) between two molecules in the vicinity of a metallic nanoparticle such as a nanoshell is studied within a phenomenological model which takes into account the nonlocal optical response of the metal. This model allows for arbitrary locations and orientations of the two molecular dipoles with respect to the metal particle which can be of ultrasmall sizes (nm) and for which nonlocal effects are of high significance. In particular, for the nanoshell case, the molecules can be located both outside, both inside, or one inside and one outside the shell. Also, the case with a metallic spherical particle studied mostly in the literature can be obtained in the limit of zero inner radius for the na...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfe...
The interaction of a fluorescent molecule with a gold nanoparticle is complex and can lead to excite...
Forster Resonance Energy Transfer (FRET) is a major interparticle energy transfer mechanism used in ...
Forster Resonance Energy Transfer (FRET) is a major interparticle energy transfer mechanism used in ...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
The advances in recent nanofabrication techniques have facilitated explorations of metal structures ...
Spatial nonlocality in the optical response of noble metals is shown to produce significant blue shi...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfe...
The interaction of a fluorescent molecule with a gold nanoparticle is complex and can lead to excite...
Forster Resonance Energy Transfer (FRET) is a major interparticle energy transfer mechanism used in ...
Forster Resonance Energy Transfer (FRET) is a major interparticle energy transfer mechanism used in ...
The field of plasmonics investigates how electromagnetic fields can be confined into sub- wavelength...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
The advances in recent nanofabrication techniques have facilitated explorations of metal structures ...
Spatial nonlocality in the optical response of noble metals is shown to produce significant blue shi...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
© 2017 IOP Publishing Ltd. In this work, we present a rigorous approach for analyzing the optical re...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfe...
The interaction of a fluorescent molecule with a gold nanoparticle is complex and can lead to excite...