Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear manipulation of light at the nanoscale. In this work, we exploit the effective coupling of electric and toroidal modes in AlGaAs nanodimers to locally enhance both electric and magnetic fields while minimizing the optical scattering, thereby optimizing their second-harmonic generation efficiency with respect to the case of a single isolated nanodisk. We also demonstrate that proper near-field coupling can provide further degrees of freedom to control the polarization state and the radiation diagram of the second-harmonic field
Recently, nonlinear optics at the nanoscale level has emerged as a promising branch of nanophotonics...
We employ doughnut-shaped cylindrical vector beams to observe the enhanced second-harmonic generatio...
Manipulating light at the nanoscale by means of dielectric nanoantennas recently received renewed at...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
© 2016 American Chemical Society. The quest for nanoscale light sources with designer radiation patt...
We demonstrate a 5-fold enhancement of second harmonic generation efficiency and control on polariza...
We fabricate AlGaAs nanodisk antennas on a glass substrate and demonstrate experimentally the shapin...
© 2017 Institute of Electrical and Electronics Engineers Inc. All Rights Reserved. We fabricate AlGa...
Recently, nonlinear optics at the nanoscale level has emerged as a promising branch of nanophotonics...
We employ doughnut-shaped cylindrical vector beams to observe the enhanced second-harmonic generatio...
Manipulating light at the nanoscale by means of dielectric nanoantennas recently received renewed at...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
Dielectric nanocavities are emerging as a versatile and powerful tool for the linear and nonlinear m...
© 2016 American Chemical Society. The quest for nanoscale light sources with designer radiation patt...
We demonstrate a 5-fold enhancement of second harmonic generation efficiency and control on polariza...
We fabricate AlGaAs nanodisk antennas on a glass substrate and demonstrate experimentally the shapin...
© 2017 Institute of Electrical and Electronics Engineers Inc. All Rights Reserved. We fabricate AlGa...
Recently, nonlinear optics at the nanoscale level has emerged as a promising branch of nanophotonics...
We employ doughnut-shaped cylindrical vector beams to observe the enhanced second-harmonic generatio...
Manipulating light at the nanoscale by means of dielectric nanoantennas recently received renewed at...