We study resonance energy transfer between a donor–acceptor pair located on opposite sides of a spherical silver nanoparticle and explore the dependence of energy-transfer rate on nanoparticle size using a quantum electrodynamics theory we developed previously. This theory indicates that the rate is determined by the product of donor emission spectra, acceptor absorption spectra, and an electronic coupling factor (CF) that is determined by electrodynamics associated with the donor as a dipole emitter near the nanoparticle. We find that the CF spectra show peaks that are associated with localized surface plasmon resonances, but the locations of the most significant peaks are less correlated to the size of the nanoparticle than is found for e...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfe...
In this work, we present a comprehensive theoretical and computational study of donor/acceptor reson...
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...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
The interaction of a fluorescent molecule with a gold nanoparticle is complex and can lead to excite...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We investigate the interaction of tightly focused light with the surface-plasmon-polariton resonance...
Coupling of light to charges in a metallic nanoparticle leads to hybrid light-matter states, localis...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfe...
In this work, we present a comprehensive theoretical and computational study of donor/acceptor reson...
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...
A quantum mechanical theory of the rate of excitation energy transfer from a fluorescent dye molecul...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
The interaction of a fluorescent molecule with a gold nanoparticle is complex and can lead to excite...
The authors study the distance dependence of the rate of electronic excitation energy transfer from ...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We investigate the interaction of tightly focused light with the surface-plasmon-polariton resonance...
Coupling of light to charges in a metallic nanoparticle leads to hybrid light-matter states, localis...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
In this thesis, a detailed experimental study on Plasmon-Coupled Resonance Energy Transfer mechanism...
The distance dependence of localized surface plasmon (LSP) coupled Förster resonance energy transfe...