International Journal of Optics (in press, 2012)International audienceUsing either quasi-static approximation or exact Mie expansion, we characterize the localized surface plasmons supported by a metallic spherical nanoparticle. We estimate the quality factor $Q_n$ and define the effective volume $V_n$ of the $n^{th}$ mode in a such a way that coupling strength with a neighbouring dipolar emitter is proportional to the ratio $Q_n/V_n$ (Purcell factor). The role of Joule losses, far-field scattering and mode confinement in the coupling mechanism are introduced and discussed with simple physical understanding, with particular attention paid to energy conservation
International audienceIn this paper, we present a theoretical and simulation work about the modifica...
A theory of the interaction between a radiating dipole and the plasmonic excitations of a spherical ...
A theory of the interaction between a radiating dipole and the plasmonic excitations of a spherical ...
International audienceMolecular sytems are efficiently coupled to metal nanoparticles via the excita...
International audienceMolecular sytems are efficiently coupled to metal nanoparticles via the excita...
Molecular sytems are efficiently coupled to metal nanoparticles via the excitation of localized surf...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceSpasers are based on a combination of the localized plasmon field properties o...
International audienceIn this paper, we present a theoretical and simulation work about the modifica...
A theory of the interaction between a radiating dipole and the plasmonic excitations of a spherical ...
A theory of the interaction between a radiating dipole and the plasmonic excitations of a spherical ...
International audienceMolecular sytems are efficiently coupled to metal nanoparticles via the excita...
International audienceMolecular sytems are efficiently coupled to metal nanoparticles via the excita...
Molecular sytems are efficiently coupled to metal nanoparticles via the excitation of localized surf...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceThe Purcell factor F p is a key quantity in cavity quantum electrodynamics (cQ...
International audienceSpasers are based on a combination of the localized plasmon field properties o...
International audienceIn this paper, we present a theoretical and simulation work about the modifica...
A theory of the interaction between a radiating dipole and the plasmonic excitations of a spherical ...
A theory of the interaction between a radiating dipole and the plasmonic excitations of a spherical ...