English

A single-layer panoramic metalens with > 170{\deg} diffraction-limited field of view

Optics 2019-09-23 v2 Applied Physics

Abstract

Wide-angle optical functionality is crucial for implementation of advanced imaging and image projection devices. Conventionally, wide-angle operation is attained by complicated assembly of multiple optical elements. Recent advances in nanophotonics have led to metasurface lenses or metalenses, a new class of ultra-thin planar lenses utilizing subwavelength nanoantennas to gain full control of the phase, amplitude, and/or polarization of light. Here we present a novel metalens design capable of performing diffraction-limited focusing and imaging over an unprecedented > 170 degree angular field of view (FOV). The lens is monolithically integrated on a one-piece flat substrate and involves only a single layer of metasurface that corrects third-order Seidel aberrations including coma, astigmatism, and field curvature. The metalens further features a planar focal plane, which enables considerably simplified system architectures for applications in imaging and projection. We fabricated the metalens using Huygens meta-atoms operating at 5.2 micron wavelength and experimentally demonstrated aberration-free focusing and imaging over the entire FOV. The design concept is generic and can be readily adapted to different meta-atom geometries and wavelength ranges to meet diverse application demands.

Keywords

Cite

@article{arxiv.1908.03626,
  title  = {A single-layer panoramic metalens with > 170{\deg} diffraction-limited field of view},
  author = {Mikhail Y. Shalaginov and Sensong An and Fan Yang and Peter Su and Dominika Lyzwa and Anuradha Agarwal and Hualiang Zhang and Juejun Hu and Tian Gu},
  journal= {arXiv preprint arXiv:1908.03626},
  year   = {2019}
}

Comments

14 pages, 6 figures