The nonradiating nature of anapole modes owing to the compositions of electric and toroidal dipole moments makes them distinct from conversional radiative resonances, and they have been suggested for the design of nanophotonic devices such as nanolasers based on light–matter interactions tailor by nanodisks. Therefore, the investigation of resonance coupling between molecular excitons and anapole modes is not only of fundamental interest, but is also promising for practical applications. To this end, a heterostructure composed of a silicon nanodisk and a uniform molecular J-aggregate ring is used to achieve the resonance coupling between the exciton transition and the anapole mode. In contrast with that of the conversional resonances, the r...
Dielectric nanostructures exhibit low-loss electrical and magnetic resonance, making them ideal for ...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
© 2016 American Chemical Society.Due to their optical magnetic and electric resonances associated wi...
Due to their optical magnetic and electric resonances associated with the high refractive index, die...
The polarization- and angle-resolved optical responses of the anapole mode in silicon nano-disks arr...
Light-matter interactions at the nanoscale constitute a fundamental ingredient for engineering appli...
Broadband solar light harvesting plays a crucial role for efficient energy conversion. Anapole excit...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
High-index nanoparticles are known to support radiationless states called anapoles, where dipolar an...
High-index dielectric nanostructures have recently become prominent forefront alternatives for manip...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
Dielectric nanostructures exhibit low-loss electrical and magnetic resonance, making them ideal for ...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
© 2016 American Chemical Society.Due to their optical magnetic and electric resonances associated wi...
Due to their optical magnetic and electric resonances associated with the high refractive index, die...
The polarization- and angle-resolved optical responses of the anapole mode in silicon nano-disks arr...
Light-matter interactions at the nanoscale constitute a fundamental ingredient for engineering appli...
Broadband solar light harvesting plays a crucial role for efficient energy conversion. Anapole excit...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
High-index nanoparticles are known to support radiationless states called anapoles, where dipolar an...
High-index dielectric nanostructures have recently become prominent forefront alternatives for manip...
We demonstrate the strong coupling between excitons in organic molecules and all-dielectric metasurf...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
Exciton–polaritons are hybrids of light and matter formed at the strong coupling regime that exhibit...
Dielectric nanostructures exhibit low-loss electrical and magnetic resonance, making them ideal for ...
Enhancement of inelastic light emission processes through resonant excitation usually correlates wit...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...