Tunable nonlocal metasurfaces based on graphene for analogue optical computation

  • Khodasevych I
  • Wesemann L
  • Roberts A
  • et al.
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Abstract

Meta-optical devices have recently emerged as ultra-compact candidates for real-time computation in the spatial domain. The use of meta-optics for applications in image processing and wavefront sensing could enable an order of magnitude increase in processing speed and data throughput, while simultaneously drastically reducing the footprint of currently available solutions to enable miniaturisation. Most research to date has focused on static devices that can perform a single operation. Dynamically tunable devices, however, offer increased versatility. Here we propose graphene covered subwavelength silicon carbide gratings as electrically tunable optical computation and image processing devices at mid-infrared wavelengths.

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Khodasevych, I., Wesemann, L., Roberts, A., & Iacopi, F. (2023). Tunable nonlocal metasurfaces based on graphene for analogue optical computation. Optical Materials Express, 13(5), 1475. https://doi.org/10.1364/ome.484494

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