Optical metasurfaces for generating and manipulating optical vortex beams

Author:

Ahmed Hammad1,Kim Hongyoon2,Zhang Yuebian3,Intaravanne Yuttana1,Jang Jaehyuck4,Rho Junsuk245ORCID,Chen Shuqi3,Chen Xianzhong1ORCID

Affiliation:

1. School of Engineering and Physical Sciences , Heriot-Watt University , Edinburgh EH144AS , UK

2. Department of Mechanical Engineering , Pohang University of Science and Technology (POSTECH) , Pohang 37673 , Republic of Korea

3. School of Physics and TEDA Applied Physics Institute , Nankai University , 94 Weijin Road , Tianjin , 300071 , China

4. Department of Chemical Engineering , Pohang University of Science and Technology (POSTECH) , Pohang 37673 , Republic of Korea

5. POSCO-POSTECH-RIST Convergence Research Center for Flat Optics and Metaphotonics , Pohang 37673 , Republic of Korea

Abstract

Abstract Optical vortices (OVs) carrying orbital angular momentum (OAM) have attracted considerable interest in the field of optics and photonics owing to their peculiar optical features and extra degree of freedom for carrying information. Although there have been significant efforts to realize OVs using conventional optics, it is limited by large volume, high cost, and lack of design flexibility. Optical metasurfaces have recently attracted tremendous interest due to their unprecedented capability in the manipulation of the amplitude, phase, polarization, and frequency of light at a subwavelength scale. Optical metasurfaces have revolutionized design concepts in photonics, providing a new platform to develop ultrathin optical devices for the realization of OVs at subwavelength resolution. In this article, we will review the recent progress in optical metasurface-based OVs. We provide a comprehensive discussion on the optical manipulation of OVs, including OAM superposition, OAM sorting, OAM multiplexing, OAM holography, and nonlinear metasurfaces for OAM generation and manipulation. The rapid development of metasurface for OVs generation and manipulation will play an important role in many relevant research fields. We expect that metasurface will fuel the continuous progress of wearable and portable consumer electronics and optics where low-cost and miniaturized OAM related systems are in high demand.

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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