International audienceWe propose and theoretically study a metallo-dielectric photonic crystal (MDPhC) based on metallic annular aperture arrays (AAA) associated to a nonlinear material (LiNbO3) for the second harmonic generation (SHG). An optimal structure design can be found thanks to the relations that link the geometrical parameters to the operating point namely the wavelength of the fundamental and SHG signals. A slow light phenomenon, which occurs at the cut-off frequency of the guided mode through the annular cavities, is at the origin of the SHG signal enhancement. The benefit of the AAA is demonstrated through a comparison with cylindrical aperture array
We demonstrate monolithic aluminum gallium arsenide (AlGaAs) optical nanoantennas for enhanced secon...
Frequency conversion plays an important role in both fundamental and applied nano-optics. Doubling t...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...
International audienceA new configuration of sub-wavelength silver coaxial apertures filled with Lit...
This study demonstrates the idea of a 2-D photonic crystal by poling a wafer of lithium niobate with...
Lithium niobate is a ferroelectric material widely used in nonlinear and integrated optics due to it...
The potential of nonlinear optical phenomena in adding functionality to nanostructures like nanopart...
Second-order nonlinear metasurfaces have proven their ability to efficiently convert the frequency ...
Nonlinear optics has become an important part of our technology related daily life since its rapid d...
We demonstrate twin-beam second-harmonic generation from telecommunications wavelengths in an optimi...
In this study, it was shown that field enhancement in the nonlinear metal-insulator-metal (MIM) plas...
The association of plasmonic nanostructures with nonlinear dielectric systems has been shown to prov...
A metal film with a thickness that reflects essentially all incident light, can be made highly trans...
We demonstrate a 60–fold enhancement of the second harmonic generation (SHG) response at the nanosca...
International audienceIn this paper, we proposed and numerically demonstrated a giant enhancement up...
We demonstrate monolithic aluminum gallium arsenide (AlGaAs) optical nanoantennas for enhanced secon...
Frequency conversion plays an important role in both fundamental and applied nano-optics. Doubling t...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...
International audienceA new configuration of sub-wavelength silver coaxial apertures filled with Lit...
This study demonstrates the idea of a 2-D photonic crystal by poling a wafer of lithium niobate with...
Lithium niobate is a ferroelectric material widely used in nonlinear and integrated optics due to it...
The potential of nonlinear optical phenomena in adding functionality to nanostructures like nanopart...
Second-order nonlinear metasurfaces have proven their ability to efficiently convert the frequency ...
Nonlinear optics has become an important part of our technology related daily life since its rapid d...
We demonstrate twin-beam second-harmonic generation from telecommunications wavelengths in an optimi...
In this study, it was shown that field enhancement in the nonlinear metal-insulator-metal (MIM) plas...
The association of plasmonic nanostructures with nonlinear dielectric systems has been shown to prov...
A metal film with a thickness that reflects essentially all incident light, can be made highly trans...
We demonstrate a 60–fold enhancement of the second harmonic generation (SHG) response at the nanosca...
International audienceIn this paper, we proposed and numerically demonstrated a giant enhancement up...
We demonstrate monolithic aluminum gallium arsenide (AlGaAs) optical nanoantennas for enhanced secon...
Frequency conversion plays an important role in both fundamental and applied nano-optics. Doubling t...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...