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Octave bandwidth photonic fishnet-achromatic-metalens.

Abdoulaye NdaoLiyi HsuJeongho HaJun-Hee ParkConnie Chang-HasnainBoubacar Kanté
Published in: Nature communications (2020)
Planar structured interfaces, also known as metasurfaces, are continuously attracting interest owing to their ability to manipulate fundamental attributes of light, including angular momentum, phase, or polarization. However, chromatic aberration, limiting broadband operation, has remained a challenge for metasurfaces-based optical components and imagers. The limitation stems from the intrinsic dispersion of existing materials and design principles. Here we report and experimentally demonstrate polarization-independent fishnet-achromatic-metalenses with measured average efficiencies over 70% in the continuous band from the visible (640 nm) to the infrared (1200 nm). Results of the scalable platform are enabling for applications requiring broad bandwidth and high efficiency including energy harvesting, virtual reality and information processing devices, or medical imaging.
Keyphrases
  • high efficiency
  • virtual reality
  • high speed
  • high resolution
  • photodynamic therapy
  • healthcare
  • high throughput
  • fluorescence imaging
  • health information
  • light emitting