Broadband solar light harvesting plays a crucial role for efficient energy conversion. Anapole excitations and associated absorption engineering in dielectric nanoresonators are a focus of nanophotonic research due to the intricate combination of nonradiating modes and strong electromagnetic field confinement in the underlying material. The arising high field strengths are used for enhanced second-harmonic generation and photocatalysis, where devices require large areas with closely spaced nanoresonators for sizable photonic yields. However, most anapole studies have so far been carried out at the single-particle level, neglecting the influence of anapole–anapole interactions. Here, we present a systematic study of coupling mechanisms in re...
Conventional electromagnetic multipoles can be completed by complementary sources of toroidal moment...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
High–refractive index nanostructured dielectrics have the ability to locally enhance electromagnetic...
High refractive index dielectric nanostructures represent a new frontier in nanophotonics, and the u...
High-index dielectric nanostructures have recently become prominent forefront alternatives for manip...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
Benefiting from large intrinsic nonlinearities, low absorption, and high field enhancement abilities...
The polarization- and angle-resolved optical responses of the anapole mode in silicon nano-disks arr...
The nonradiating nature of anapole modes owing to the compositions of electric and toroidal dipole m...
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...
Nonradiating current configurations attract attention of physicists for many years as possible model...
Optical resonances arising from quasi-bound states in the continuum (QBICs) have been recently ident...
Anapole modes are known to be excited only in high-index nanoparticles. Here we show that the nanodi...
Semiconductor nanowires show a great deal of promise for applications in a widerange of important fi...
Conventional electromagnetic multipoles can be completed by complementary sources of toroidal moment...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
High–refractive index nanostructured dielectrics have the ability to locally enhance electromagnetic...
High refractive index dielectric nanostructures represent a new frontier in nanophotonics, and the u...
High-index dielectric nanostructures have recently become prominent forefront alternatives for manip...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
Benefiting from large intrinsic nonlinearities, low absorption, and high field enhancement abilities...
The polarization- and angle-resolved optical responses of the anapole mode in silicon nano-disks arr...
The nonradiating nature of anapole modes owing to the compositions of electric and toroidal dipole m...
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...
Nonradiating current configurations attract attention of physicists for many years as possible model...
Optical resonances arising from quasi-bound states in the continuum (QBICs) have been recently ident...
Anapole modes are known to be excited only in high-index nanoparticles. Here we show that the nanodi...
Semiconductor nanowires show a great deal of promise for applications in a widerange of important fi...
Conventional electromagnetic multipoles can be completed by complementary sources of toroidal moment...
All-dielectric metamaterials are a promising platform for the development of integrated photonics ap...
High–refractive index nanostructured dielectrics have the ability to locally enhance electromagnetic...