We have conducted a theoretical study of harmonic generation from a silver grating having slits filled with GaAs. By working in the enhanced transmission regime, and by exploiting phase-locking between the pump and its harmonics, we guarantee strong field localization and enhanced harmonic generation under conditions of high absorption at visible and UV wavelengths. Silver is treated using the hydrodynamic model, which includes Coulomb and Lorentz forces, convection, electron gas pressure, plus bulk χ(3) contributions. For GaAs we use nonlinear Lorentz oscillators, with characteristic χ(2) and χ(3) and nonlinear sources that arise from symmetry breaking and Lorentz forces. We find that: (i) electron pressure in the metal contributes to line...
Phase-locked second and third harmonic generation in the opaque region of a GaAs wafer is experiment...
Understanding how light interacts with matter at the nanoscale is pivotal if one is to properly engi...
We predict and experimentally observe the enhancement by three orders of magnitude of phase mismatch...
We theoretically describe a way to enhance harmonic generation from subwavelength slits milled on se...
We demonstrate second and third harmonic generation from a GaAs substrate, well-below the absorption...
We demonstrate second and third harmonic generation from a GaAs substrate, well-below the absorption...
We present a theoretical approach to the study of second- and third-harmonic generation from metalli...
International audienceMetasurfaces able to concentrate light at various wavelengths are promising fo...
International audienceMetasurfaces able to concentrate light at various wavelengths are promising fo...
International audienceMetasurfaces able to concentrate light at various wavelengths are promising fo...
We study the propagation and momentum transport of the inhomogeneous component of second and third h...
We present a theoretical approach to the study of second- and third-harmonic generation from metalli...
We demonstrate second and third harmonic generation from a GaAs substrate, well-below the absorption...
We demonstrate second and third harmonic generation from a GaAs substrate, well-bellow the absorptio...
Phase-locked second and third harmonic generation in the opaque region of a GaAs wafer is experimen...
Phase-locked second and third harmonic generation in the opaque region of a GaAs wafer is experiment...
Understanding how light interacts with matter at the nanoscale is pivotal if one is to properly engi...
We predict and experimentally observe the enhancement by three orders of magnitude of phase mismatch...
We theoretically describe a way to enhance harmonic generation from subwavelength slits milled on se...
We demonstrate second and third harmonic generation from a GaAs substrate, well-below the absorption...
We demonstrate second and third harmonic generation from a GaAs substrate, well-below the absorption...
We present a theoretical approach to the study of second- and third-harmonic generation from metalli...
International audienceMetasurfaces able to concentrate light at various wavelengths are promising fo...
International audienceMetasurfaces able to concentrate light at various wavelengths are promising fo...
International audienceMetasurfaces able to concentrate light at various wavelengths are promising fo...
We study the propagation and momentum transport of the inhomogeneous component of second and third h...
We present a theoretical approach to the study of second- and third-harmonic generation from metalli...
We demonstrate second and third harmonic generation from a GaAs substrate, well-below the absorption...
We demonstrate second and third harmonic generation from a GaAs substrate, well-bellow the absorptio...
Phase-locked second and third harmonic generation in the opaque region of a GaAs wafer is experimen...
Phase-locked second and third harmonic generation in the opaque region of a GaAs wafer is experiment...
Understanding how light interacts with matter at the nanoscale is pivotal if one is to properly engi...
We predict and experimentally observe the enhancement by three orders of magnitude of phase mismatch...