We construct a mode-selective effective model describing the interaction of the localised surface plasmon polaritons (LSPs) supported by a spherical metal nanoparticle (MNP) with N quantum emitters (QEs) in an arbitrary geometric arrangement. Simplifying previously presented procedures, we develop a formulation in which the field response in the presence of the MNP can be decomposed into orthogonal modes, expanding the Green tensor of the system in the spherical vector harmonics basis and using the generalized global Löwdin orthogonalization algorithm. We investigate the possibility of using the LSPs as mediators of an efficient control of population transfer between two QEs. We show that a Stimulated Raman Adiabatic Passage (STIRAP) config...
We provide the quantum-mechanical description of the excitation of long-range surface-plasmon polari...
We investigate a system comprised of a constellation quantum emitters interacting with a localized s...
We have developed a semianalytical theory to study a quantum plasmonic system composed of a quantum ...
We construct a mode-selective effective model describing the interaction of the localised surface pl...
International audienceWe show that the interaction of surface plasmons with quantum emitters can be ...
A quantum theory of retarded surface plasmons on a metal-vacuum interface is formulated, by analogy ...
We develop a quantum theory of plasmon polaritons in chains of metallic nanoparticles, describing bo...
Coupling of light to charges in a metallic nanoparticle leads to hybrid light-matter states, localis...
Controlling quantum emitters (atoms, molecules, quantum dots, etc.), light, and its interactionsis a...
A multiscale hybrid quantum/classical approach using n-level quantum systems embedded in a classical...
This book represents the first detailed description, including both theoretical aspects and experime...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We make a step towards quantum nanoplasmonics: surface plasmon fields of a nanosystem are quantized ...
We examine the quantum dynamics of surface plasmons weakly coupled to optical soliton photons in a m...
We study arrays of plasmonic nanoparticles combined with quantum emitters, quantum plasmonic lattice...
We provide the quantum-mechanical description of the excitation of long-range surface-plasmon polari...
We investigate a system comprised of a constellation quantum emitters interacting with a localized s...
We have developed a semianalytical theory to study a quantum plasmonic system composed of a quantum ...
We construct a mode-selective effective model describing the interaction of the localised surface pl...
International audienceWe show that the interaction of surface plasmons with quantum emitters can be ...
A quantum theory of retarded surface plasmons on a metal-vacuum interface is formulated, by analogy ...
We develop a quantum theory of plasmon polaritons in chains of metallic nanoparticles, describing bo...
Coupling of light to charges in a metallic nanoparticle leads to hybrid light-matter states, localis...
Controlling quantum emitters (atoms, molecules, quantum dots, etc.), light, and its interactionsis a...
A multiscale hybrid quantum/classical approach using n-level quantum systems embedded in a classical...
This book represents the first detailed description, including both theoretical aspects and experime...
Thesis (Ph.D.)--University of Washington, 2017-03Coherent and collective charge oscillations in meta...
We make a step towards quantum nanoplasmonics: surface plasmon fields of a nanosystem are quantized ...
We examine the quantum dynamics of surface plasmons weakly coupled to optical soliton photons in a m...
We study arrays of plasmonic nanoparticles combined with quantum emitters, quantum plasmonic lattice...
We provide the quantum-mechanical description of the excitation of long-range surface-plasmon polari...
We investigate a system comprised of a constellation quantum emitters interacting with a localized s...
We have developed a semianalytical theory to study a quantum plasmonic system composed of a quantum ...