We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in arrays of plasmonic nanoparticles in the presence of structural imperfections. Hybrid light-matter states, known as plasmon-exciton polaritons (PEPs), are formed by the strong coupling of Frenkel excitons in molecules to surface lattice resonances. These resonances result from the radiative coupling of localized surface plasmon polaritons in silver nanoparticles enhanced by diffraction on the array. By designing arrays with different lattice constants, we show that the nonlinear emission frequency is solely determined by the relaxation of exciton polaritons through vibrational quanta in the molecules. We also observe long-range spatial coher...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
We demonstrate nonlinear emission from molecular layers strongly coupled to extended light fields in...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Arrays of metallic nanoparticles support collective plasmonic resonances known as surface lattice re...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...
Strong coupling of Frenkel excitons with surface plasmons leads to the formation of bosonic quasi-pa...