We describe both theoretically and experimentally the existence and excitation of confined modes in planar arrays of gold nanodisks. Ordered 2D lattices of monodispersive nanoparticles are manufactured, embedded in a silica matrix, and exposed to evanescent prism-coupling illumination, leading to dark features in the reflectivity, which signal the presence of confined modes guided along the arrays. We find remarkable agreement between theory and experiment in the frequency-momentum dispersion of the resonances. Direct excitation of these modes reveals long propagation distances and deep extinction features. This combined experimental and theoretical characterization of guided modes shows a good understanding of the optical response of metal...
Ordered arrays of metallic nanostructures support collective modes known as lattice resonances, whic...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
International audiencePeriodic arrays of proximate but noncontacting noble metal nanoparticles provi...
We describe both theoretically and experimentally the existence and excitation of confined modes in ...
International audienceLattice modes have been proposed as a means to engineer and control the linewi...
The mechanisms of coupling between the lattice modes of a two-dimensional (2D) array consisting of A...
We study the hybridized plasmonic-photonic modes supported by two-dimensional arrays of metallic nan...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
Abstract Background The plasmonic breathing modes of a metallic nanodisc are dark plasmonic modes an...
We demonstrate the strong coupling of surface lattice resonances (SLRs) - hybridized plasmonic/photo...
In nanoscopic systems, size, geometry, and arrangement are the crucial determinants of the light-mat...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
In nanoscopic systems, size, geometry, and arrangement are the crucial determinants of the light-mat...
The optical response of metallic nanoparticle arrays is dominated by localized surface plasmon excit...
Baptiste Auguié and William L. Barnes, Physical Review Letters, Vol. 101, article 143902 (2008). Cop...
Ordered arrays of metallic nanostructures support collective modes known as lattice resonances, whic...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
International audiencePeriodic arrays of proximate but noncontacting noble metal nanoparticles provi...
We describe both theoretically and experimentally the existence and excitation of confined modes in ...
International audienceLattice modes have been proposed as a means to engineer and control the linewi...
The mechanisms of coupling between the lattice modes of a two-dimensional (2D) array consisting of A...
We study the hybridized plasmonic-photonic modes supported by two-dimensional arrays of metallic nan...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
Abstract Background The plasmonic breathing modes of a metallic nanodisc are dark plasmonic modes an...
We demonstrate the strong coupling of surface lattice resonances (SLRs) - hybridized plasmonic/photo...
In nanoscopic systems, size, geometry, and arrangement are the crucial determinants of the light-mat...
Plasmonics is the branch of photonics that is concerned with the interactions which take place betwe...
In nanoscopic systems, size, geometry, and arrangement are the crucial determinants of the light-mat...
The optical response of metallic nanoparticle arrays is dominated by localized surface plasmon excit...
Baptiste Auguié and William L. Barnes, Physical Review Letters, Vol. 101, article 143902 (2008). Cop...
Ordered arrays of metallic nanostructures support collective modes known as lattice resonances, whic...
The strong coupling between planar arrays of gold and silver nanoparticles mediated by a near-field ...
International audiencePeriodic arrays of proximate but noncontacting noble metal nanoparticles provi...