Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large resonant enhancement of both electric and magnetic fields. They offer an alternative platform to plasmonic resonances to study light-matter interactions from the weak to the strong coupling regimes. Here, we experimentally demonstrate the strong coupling of bright excitons in monolayer WS$_2$ with Mie surface lattice resonances (Mie-SLRs). We resolve both electric and magnetic Mie-SLRs of a Si nanoparticle array in angular dispersion measurements. At the zero detuning condition, the dispersion of electric Mie-SLRs (e-SLRs) exhibits a clear anti-crossing and a Rabi-splitting of 32 meV between the upper and lower polariton bands. The magnetic ...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Light-matter interactions at the nanoscale constitute a fundamental ingredient for engineering appli...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and a lar...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and a lar...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Light-matter interactions at the nanoscale constitute a fundamental ingredient for engineering appli...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and large...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and a lar...
Optically induced Mie resonances in dielectric nanoantennas feature low dissipative losses and a lar...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
Light-matter interactions at the nanoscale constitute a fundamental ingredient for engineering appli...