We demonstrate that a dielectric anapole resonator on a metallic mirror can enhance the third harmonic emission by two orders of magnitude compared to a typical anapole resonator on an insulator substrate. By employing a gold mirror under a silicon nanodisk, we introduce a novel characteristic of the anapole mode through the spatial overlap of resonantly excited Cartesian electric and toroidal dipole modes. This is a remarkable improvement on the early demonstrations of the anapole mode in which the electric and toroidal modes interfere off-resonantly. Therefore, our system produces a significant near-field enhancement, facilitating the nonlinear process. Moreover, the mirror surface boosts the nonlinear emission via the free-charge os...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
We report efficient second-harmonic emission by single multilayer metal-dielectric nanocavities. Eng...
peer reviewedHarmonic generation mechanisms are of great interest in nanoscience and nanotechnology...
Benefiting from large intrinsic nonlinearities, low absorption, and high field enhancement abilities...
An all-dielectric nanoantenna is expected to greatly boost the nonlinear performance owing to its la...
High refractive index dielectric nanoantennas are expected to become key elements for nonlinear nano...
We present an all-dielectric germanium nanosystem exhibiting a strong third order nonlinear response...
Background: Dielectric nanoantennas have recently emerged as an alternative solution to plasmonics f...
Background: Dielectric nanoantennas have recently emerged as an alternative solution to plasmonics f...
Nonlinear harmonic generation in metasurfaces has shown great promise for applications such as novel...
Anapole modes are known to be excited only in high-index nanoparticles. Here we show that the nanodi...
Harmonic generation mechanisms are of great interest in nanoscience and nanotechnology, since they a...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
Broadband solar light harvesting plays a crucial role for efficient energy conversion. Anapole excit...
Harmonic generation mechanisms are of great interest in nanoscience and nanotechnology, since they a...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
We report efficient second-harmonic emission by single multilayer metal-dielectric nanocavities. Eng...
peer reviewedHarmonic generation mechanisms are of great interest in nanoscience and nanotechnology...
Benefiting from large intrinsic nonlinearities, low absorption, and high field enhancement abilities...
An all-dielectric nanoantenna is expected to greatly boost the nonlinear performance owing to its la...
High refractive index dielectric nanoantennas are expected to become key elements for nonlinear nano...
We present an all-dielectric germanium nanosystem exhibiting a strong third order nonlinear response...
Background: Dielectric nanoantennas have recently emerged as an alternative solution to plasmonics f...
Background: Dielectric nanoantennas have recently emerged as an alternative solution to plasmonics f...
Nonlinear harmonic generation in metasurfaces has shown great promise for applications such as novel...
Anapole modes are known to be excited only in high-index nanoparticles. Here we show that the nanodi...
Harmonic generation mechanisms are of great interest in nanoscience and nanotechnology, since they a...
Resonant optical excitation of high index dielectric nanoparticles offers unique opportunities for r...
Broadband solar light harvesting plays a crucial role for efficient energy conversion. Anapole excit...
Harmonic generation mechanisms are of great interest in nanoscience and nanotechnology, since they a...
Resonant optical excitation of dielectric particles offers unique opportunities for future optical a...
We report efficient second-harmonic emission by single multilayer metal-dielectric nanocavities. Eng...
peer reviewedHarmonic generation mechanisms are of great interest in nanoscience and nanotechnology...