18 pages, 5 figures; few minor changesWe determine the lifetime of the surface plasmon in metallic nanoparticles under various conditions, concentrating on the Landau damping, which is the dominant mechanism for intermediate-size particles. Besides the main contribution to the lifetime, which smoothly increases with the size of the particle, our semiclassical evaluation yields an additional oscillating component. For the case of noble metal particles embedded in a dielectric medium, it is crucial to consider the details of the electronic confinement; we show that in this case the lifetime is determined by the shape of the self-consistent potential near the surface. Strong enough perturbations may lead to the second collective excitation of ...
Nanoparticles—regularly patterned or randomly dispersed—are a key ingredient for emergin...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Noble metal nanoparticles, when interacting with an external electric field, give rise to a phenomen...
18 pages, 5 figures; few minor changesWe determine the lifetime of the surface plasmon in metallic n...
We study the Landau damping of the surface plasmon resonance of metallic nanoparticles embedded in ...
The lifetime of surface plasmons in metallic thin films has been calculated using linear response th...
During the past decade, nanoplasmonics and nanophotonicshas emerged as a new branch of nanosciences ...
Abstract. We show that the dynamics of the surface plasmon in metallic nanoparticles damped by its i...
International audienceThe impact of quantum confinement on the width of the surface plasmon resonanc...
Noble metal nanoparticles, when interacting with an external electric field, give rise to a phenomen...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
We investigate the dynamics of a plasmonic oscillation over a metal nanoparticle when it is strongly...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Nanoparticles—regularly patterned or randomly dispersed—are a key ingredient for emerging technologi...
Nanoparticles—regularly patterned or randomly dispersed—are a key ingredient for emergin...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Noble metal nanoparticles, when interacting with an external electric field, give rise to a phenomen...
18 pages, 5 figures; few minor changesWe determine the lifetime of the surface plasmon in metallic n...
We study the Landau damping of the surface plasmon resonance of metallic nanoparticles embedded in ...
The lifetime of surface plasmons in metallic thin films has been calculated using linear response th...
During the past decade, nanoplasmonics and nanophotonicshas emerged as a new branch of nanosciences ...
Abstract. We show that the dynamics of the surface plasmon in metallic nanoparticles damped by its i...
International audienceThe impact of quantum confinement on the width of the surface plasmon resonanc...
Noble metal nanoparticles, when interacting with an external electric field, give rise to a phenomen...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
We investigate the dynamics of a plasmonic oscillation over a metal nanoparticle when it is strongly...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Nanoparticles—regularly patterned or randomly dispersed—are a key ingredient for emerging technologi...
Nanoparticles—regularly patterned or randomly dispersed—are a key ingredient for emergin...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Noble metal nanoparticles, when interacting with an external electric field, give rise to a phenomen...