We reveal that nonlinear effects at the nanoscale can be enhanced by bound states in the continuum. We demonstrate SHG from subwavelength AlGaAs nanoantennas with record-high conversion efficiency that exceeds by two orders of magnitude the conversion efficiency observed at the conditions of magnetic dipole Mie resonances. This gain is achieved due to the engineering of the mode structure that allows exploiting a high-Q supercavity mode at the fundamental frequency. These results constitute a significant step towards the development of highly-efficient frequency conversion metadevices in the subwavelength circuitry.Author acknowledge a financial support by the Ministry of Education and Science of the Russian Federation (3.1668.2017), the A...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Being motivated by the recent prediction of high-Q modes in subwavelength dielectric resonators insp...
We reveal that nonlinear effects at the nanoscale can be enhanced by bound states in the continuum. ...
We observe record-high efficiency of the second-harmonic generation from AIGaAs nanoantennas fabrica...
We reveal the potential of bound states in the continuum (BIC) to enhance the nonlinear response in ...
Recent progress in nanoscale optics is driven by the physics of electric and magnetic resonances sup...
Subwavelength optical resonators made of high-index dielectric materials provide efficient ways to m...
The recently emerging all-dielectric optical nanoantennas based on high-index semiconductors have pr...
Recent progress in nanoscale optical physics is associated with the development of a new branch of n...
We put forward the multipolar model which captures the physics behind linear and nonlinear response ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Being motivated by the recent prediction of high-Q modes in subwavelength dielectric resonators insp...
We reveal that nonlinear effects at the nanoscale can be enhanced by bound states in the continuum. ...
We observe record-high efficiency of the second-harmonic generation from AIGaAs nanoantennas fabrica...
We reveal the potential of bound states in the continuum (BIC) to enhance the nonlinear response in ...
Recent progress in nanoscale optics is driven by the physics of electric and magnetic resonances sup...
Subwavelength optical resonators made of high-index dielectric materials provide efficient ways to m...
The recently emerging all-dielectric optical nanoantennas based on high-index semiconductors have pr...
Recent progress in nanoscale optical physics is associated with the development of a new branch of n...
We put forward the multipolar model which captures the physics behind linear and nonlinear response ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...