Published 26 April 2023Higher-order optical harmonics entered the realm of nanostructured solids being observed recently in optical gratings and metasurfaces with a subwavelength thickness. Structuring materials at the subwavelength scale allows us toresonantly enhance the efficiency of nonlinear processes and reduce the size of high-harmonic sources. We report the observation of up to a seventh harmonic generated from a single subwavelength resonator made of AlGaAs material. This process is enabled by careful engineering of the resonator geometry for supporting an optical mode associated with a quasi-bound state in the continuum in the mid-infrared spectral range at around λ = 3.7 μm pump wavelength. The resonator volume measures ~0.1 λ3. ...
We reveal that nonlinear effects at the nanoscale can be enhanced by bound states in the continuum. ...
We demonstrate a new principle for realizing a miniaturized and scalable platform for nonlinear opti...
We demonstrate a new principle for realizing a miniaturized and scalable platform for nonlinear opti...
Generation of higher-order optical harmonics recently entered the realm of nanostructured solids bei...
We generate up to the 7th optical harmonic from a single AlGaAs resonator. The resonator hosts engin...
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...
We observe record-high efficiency of the second-harmonic generation from AIGaAs nanoantennas fabrica...
We put forward the multipolar model which captures the physics behind linear and nonlinear response ...
We study second harmonic generation in dielectric nanocylinders as a function of the wavelength of t...
Paper FF4N.8 f From the session Nonlinear Processes in Sub-wavelength Systems, 2D Materials, and Met...
Strong field confinement, long-lifetime resonances, and slow-light effects suggest that metasurfaces...
Nonlinear effects can be enhanced and tailored on a subwavelength scale by taking advantage of high ...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
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 demonstrate a new principle for realizing a miniaturized and scalable platform for nonlinear opti...
We demonstrate a new principle for realizing a miniaturized and scalable platform for nonlinear opti...
Generation of higher-order optical harmonics recently entered the realm of nanostructured solids bei...
We generate up to the 7th optical harmonic from a single AlGaAs resonator. The resonator hosts engin...
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...
We observe record-high efficiency of the second-harmonic generation from AIGaAs nanoantennas fabrica...
We put forward the multipolar model which captures the physics behind linear and nonlinear response ...
We study second harmonic generation in dielectric nanocylinders as a function of the wavelength of t...
Paper FF4N.8 f From the session Nonlinear Processes in Sub-wavelength Systems, 2D Materials, and Met...
Strong field confinement, long-lifetime resonances, and slow-light effects suggest that metasurfaces...
Nonlinear effects can be enhanced and tailored on a subwavelength scale by taking advantage of high ...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
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 demonstrate a new principle for realizing a miniaturized and scalable platform for nonlinear opti...
We demonstrate a new principle for realizing a miniaturized and scalable platform for nonlinear opti...