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      Infrared up-conversion imaging in nonlinear metasurfaces

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          Abstract

          Infrared imaging is a crucial technique in a multitude of applications, including night vision, autonomous vehicles navigation, optical tomography, and food quality control. Conventional infrared imaging technologies, however, require the use of materials like narrow-band gap semiconductors which are sensitive to thermal noise and often require cryogenic cooling. Here, we demonstrate a compact all-optical alternative to perform infrared imaging in a metasurface composed of GaAs semiconductor nanoantennas, using a nonlinear wave-mixing process. We experimentally show the up-conversion of short-wave infrared wavelengths via the coherent parametric process of sum-frequency generation. In this process, an infrared image of a target is mixed inside the metasurface with a strong pump beam, translating the image from infrared to the visible in a nanoscale ultra-thin imaging device. Our results open up new opportunities for the development of compact infrared imaging devices with applications in infrared vision and life sciences.

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          Author and article information

          Journal
          05 January 2021
          Article
          2101.01824
          76c86ba0-19d0-48f6-bb1a-1ded1a4c520f

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          32 pages, 13 figures
          physics.optics

          Optical materials & Optics
          Optical materials & Optics

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