We report room-temperature lasing in two-dimensional diffractive lattices of silver and gold plasmon particle arrays embedded in a dye-doped polymer that acts both as waveguide and gain medium. As compared to conventional dielectric distributed feedback (DFB) lasers, a central question is how the underlying band structure from which lasing emerges is modified by both the much stronger scattering and the disadvantageous loss of metal. We use spectrally resolved back-focal plane imaging to measure the wavelength and angle dependence of emission below and above threshold, thereby mapping the band structure. We find that, for silver particles, the band structure is strongly modified compared to dielectric reference DFB lasers since the strong s...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
Strong light-matter interaction leads to the appearance of new states, i.e. exciton-polaritons, with...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Diffractive arrays of strongly scattering noble metal particles coupled to a high-index slab of gain...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
Motivated by seminal proposals for surface plasmon amplification by stimulated emission, we conduct ...
We study lasing in randomized lattices of silver particles in a dye-doped waveguide. We set out to a...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
We experimentally study surface plasmon lasing in a series of metal hole arrays on a gold-semiconduc...
We study lasing in randomized lattices of silver particles in a dye-doped waveguide. We set out to a...
Lasing at the nanometre scale promises strong light-matter interactions and ultrafast operation. Pla...
Plasmonic particle arrays enable unconventional miniature lasers by virtue of feedback by enhanced s...
Plasmon lasers support cavity structures with sizes below that of the diffraction limit. However, mo...
ABSTRACT: This Letter describes how out-of-plane lattice plasmon (OLP) resonances in 2D Au nanoparti...
Mitigating radiative losses in resonant structures has been a target of extensive research in photon...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
Strong light-matter interaction leads to the appearance of new states, i.e. exciton-polaritons, with...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Diffractive arrays of strongly scattering noble metal particles coupled to a high-index slab of gain...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
Motivated by seminal proposals for surface plasmon amplification by stimulated emission, we conduct ...
We study lasing in randomized lattices of silver particles in a dye-doped waveguide. We set out to a...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
We experimentally study surface plasmon lasing in a series of metal hole arrays on a gold-semiconduc...
We study lasing in randomized lattices of silver particles in a dye-doped waveguide. We set out to a...
Lasing at the nanometre scale promises strong light-matter interactions and ultrafast operation. Pla...
Plasmonic particle arrays enable unconventional miniature lasers by virtue of feedback by enhanced s...
Plasmon lasers support cavity structures with sizes below that of the diffraction limit. However, mo...
ABSTRACT: This Letter describes how out-of-plane lattice plasmon (OLP) resonances in 2D Au nanoparti...
Mitigating radiative losses in resonant structures has been a target of extensive research in photon...
A metallic nanoparticle array with a periodicity comparable to the single particle resonance can sho...
Strong light-matter interaction leads to the appearance of new states, i.e. exciton-polaritons, with...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...