Rotational varifocal moiré metalens made of single-crystal silicon meta-atoms for visible wavelengths

Author:

Ogawa Chikara1,Nakamura Sotaro2,Aso Takumi2,Ikezawa Satoshi2ORCID,Iwami Kentaro2ORCID

Affiliation:

1. Department of Industrial Technology and Innovation , Tokyo University of Agriculture and Technology , Koganei , Tokyo 184-8588 , Japan

2. Department of Mechanical System Engineering , Tokyo University of Agriculture and Technology , Koganei , Tokyo 184-8588 , Japan

Abstract

Abstract Metasurface lenses (metalenses) offer an ultrathin and simple optical system with dynamic functions that include focal length tuning. In this study, a rotational varifocal (i.e., moiré) metalens based on octagonal single-crystal silicon pillars was designed and fabricated to realize a high transmittance, whole 2π phase coverage, and polarization insensitivity for visible wavelengths. The moiré metalens consists of a pair of cascaded metasurface-based phase lattices and the focal length can be adjusted from negative to positive by mutual rotation. The fabricated moiré metalens demonstrated a focal length that can be tuned from −36 mm to −2 mm and from 2 to 12 mm by mutual rotation from −90° to 90°, and the experimental measurements agreed well with theoretical values at the design wavelength of 633 nm. Imaging was demonstrated at three distinct wavelengths of 633, 532, and 440 nm.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials,Biotechnology

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