Plasmonic particle arrays have remarkable optical properties originating from their collective behavior, which results in resonances with narrow line widths and enhanced electric fields extending far into the surrounding medium. Such resonances can be exploited for applications in strong light-matter coupling, sensing, light harvesting, nonlinear nanophotonics, lasing, and solid-state lighting. However, as the lattice constants associated with plasmonic particle arrays are on the order of their resonance wavelengths, mapping the interaction between point dipoles and plasmonic particle arrays cannot be done with diffraction-limited methods. Here, we map the enhanced emission of single fluorescent molecules coupled to a plasmonic particle arr...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
\u3cp\u3ePlasmonic particle arrays have remarkable optical properties originating from their collect...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
Plasmonic particle arrays have remarkable optical properties originating from their collective behav...
\u3cp\u3ePlasmonic particle arrays have remarkable optical properties originating from their collect...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate that the emission of light by fluorescent molecules in the proximity of periodic arra...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
We demonstrate the coupling of multipolar surface plasmons with photonic modes in periodic arrays of...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...