Key in the application of plasmonics is the realization of low loss or high quality (Q) factor resonances. Nanoparticle arrays are systems capable of sustaining remarkably high Q-factor resonances through the hybridization of plasmonic and photonic modes, known as surface lattice resonances (SLRs). SLRs result from the coupling of localized surface plasmon resonances (LSPRs) to in-plane orders of diffraction known as Rayleigh anomalies (RAs). To date, the highest Q-factors have been achieved with the (±1, 0) diffraction orders. However, these Q-factors are highly sensitive to the angle of excitation. Here, a strategy is presented to generate high Q-factor SLRs with low dispersion by coupling LSPRs to the (0, ±1) diffraction orders. 2D array...
Arrays of metallic particles may exhibit optical collective excitations known as surface lattice res...
Collective responses of localized surface plasmon resonances, known as surface lattice resonances (S...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
ABSTRACT: This Letter describes how out-of-plane lattice plasmon (OLP) resonances in 2D Au nanoparti...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
International audienceLattice modes have been proposed as a means to engineer and control the linewi...
International audienceLattice modes have been proposed as a means to engineer and control the linewi...
Arrays of metallic particles may exhibit optical collective excitations known as surface lattice res...
Collective responses of localized surface plasmon resonances, known as surface lattice resonances (S...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
ABSTRACT: This Letter describes how out-of-plane lattice plasmon (OLP) resonances in 2D Au nanoparti...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
International audienceWhen metal nanoparticles are arranged in an ordered array, they may scatter li...
International audienceLattice modes have been proposed as a means to engineer and control the linewi...
International audienceLattice modes have been proposed as a means to engineer and control the linewi...
Arrays of metallic particles may exhibit optical collective excitations known as surface lattice res...
Collective responses of localized surface plasmon resonances, known as surface lattice resonances (S...
Periodic arrays of metallic nanoparticles may sustain surface lattice resonances (SLRs), which are c...