AI Article Synopsis

  • AlGaAs-on-insulator (AlGaAs-OI) is a promising platform for nonlinear optics, specifically in demonstrating second-harmonic generation (SHG) in nanoantennas.
  • A new approach using numerical simulations shows that difference frequency generation (DFG) can extend nonlinear frequency generation into the short wave infrared region.
  • The study emphasizes the importance of adjusting the nanoantenna geometry for efficient DFG and explores the robustness of these structures against variations during fabrication, highlighting their potential for compact infrared radiation control devices.

Article Abstract

AlGaAs-on-insulator (AlGaAs-OI) has recently emerged as a promising platform for nonlinear optics at the nanoscale. Among the most remarkable outcomes, second-harmonic generation (SHG) in the visible/near infrared spectral region has been demonstrated in AlGaAs-OI nanoantennas (NAs). In order to extend the nonlinear frequency generation towards the short wave infrared window, in this work we propose and demonstrate via numerical simulations difference frequency generation (DFG) in AlGaAs-OI NAs. The NA geometry is finely adjusted in order to obtain simultaneous optical resonances at the pump, signal and idler wavelengths, which results in an efficient DFG with conversion efficiencies up to 0.01%. Our investigation includes the study of the robustness against random variations of the NA geometry that may occur at fabrication stage. Overall, these outcomes identify what we believe to be a new potential and yet unexplored application of AlGaAs-OI NAs as compact devices for the generation and control of the radiation pattern in the near to short infrared spectral region.

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Source
http://dx.doi.org/10.1364/OE.498592DOI Listing

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