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3D-patterned inverse-designed mid-infrared metaoptics

Author

Listed:
  • Gregory Roberts

    (California Institute of Technology)

  • Conner Ballew

    (California Institute of Technology
    California Institute of Technology)

  • Tianzhe Zheng

    (California Institute of Technology)

  • Juan C. Garcia

    (Northrop Grumman Corporation)

  • Sarah Camayd-Muñoz

    (California Institute of Technology
    The Johns Hopkins University)

  • Philip W. C. Hon

    (Northrop Grumman Corporation)

  • Andrei Faraon

    (California Institute of Technology)

Abstract

Modern imaging systems can be enhanced in efficiency, compactness, and application through the introduction of multilayer nanopatterned structures for manipulation of light based on its fundamental properties. High transmission multispectral imaging is elusive due to the commonplace use of filter arrays which discard most of the incident light. Further, given the challenges of miniaturizing optical systems, most cameras do not leverage the wealth of information in polarization and spatial degrees of freedom. Optical metamaterials can respond to these electromagnetic properties but have been explored primarily in single-layer geometries, limiting their performance and multifunctional capacity. Here we use advanced two-photon lithography to realize multilayer scattering structures that achieve highly nontrivial optical transformations intended to process light just before it reaches a focal plane array. Computationally optimized multispectral and polarimetric sorting devices are fabricated with submicron feature sizes and experimentally validated in the mid-infrared. A final structure shown in simulation redirects light based on its angular momentum. These devices demonstrate that with precise 3-dimensional nanopatterning, one can directly modify the scattering properties of a sensor array to create advanced imaging systems.

Suggested Citation

  • Gregory Roberts & Conner Ballew & Tianzhe Zheng & Juan C. Garcia & Sarah Camayd-Muñoz & Philip W. C. Hon & Andrei Faraon, 2023. "3D-patterned inverse-designed mid-infrared metaoptics," Nature Communications, Nature, vol. 14(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-38258-2
    DOI: 10.1038/s41467-023-38258-2
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