4.8 Article

GaN Metalens for Pixel-Level Full-Color Routing at Visible Light

Journal

NANO LETTERS
Volume 17, Issue 10, Pages 6345-6352

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.7b03135

Keywords

Visible metasurfaces; metalens; GaN nanopillars; Pancharatnam-Berry phase method; image sensor

Funding

  1. Ministry of Science and Technology, Taiwan [MOST-106-2745-M-002-003-ASP]
  2. Academia Sinica [AS-103-TP-A06]
  3. National Center for Theoretical Sciences
  4. NEMS Research Center of National Taiwan University
  5. National Center for High-Performance Computing, Taiwan
  6. Research Center for Applied Sciences, Academia Sinica, Taiwan

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Metasurface-based components are known to be one of the promising candidates for developing flat optical systems. However, their low working efficiency highly limits the use of such flat components for feasible applications. Although the introduction of the metallic mirror has been demonstrated to successfully enhance the efficiency, it is still somehow limited for imaging and sensing applications because they are only available for devices operating in a reflection fashion. Here, we demonstrate three individual GaN-based metalenses working in a transmission window with extremely high operation efficiency at visible light (87%, 91.6%, and 50.6% for blue, green, and red light, respectively). For the proof of concept, a multiplex color router with dielectric metalens, which is capable of guiding individual primary colors into different spatial positions, is experimentally verified based on the design of out-of-plane focusing metalens. Our approach with low-cost, semiconductor fabrication compatibility and high working efficiency characteristics offers a way for establishing a complete set of flat optical components for a wide range of applications such as compact imaging sensors, optical spectroscopy, and high-resolution lithography, just named a few.

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