Literature DB >> 35244609

Active optical metasurfaces: comprehensive review on physics, mechanisms, and prospective applications.

Jingyi Yang1,2, Sudip Gurung1,2, Subhajit Bej2, Peinan Ni2, Ho Wai Howard Lee1,2.   

Abstract

Optical metasurfaces with subwavelength thickness hold considerable promise for future advances in fundamental optics and novel optical applications due to their unprecedented ability to control the phase, amplitude, and polarization of transmitted, reflected, and diffracted light. Introducing active functionalities to optical metasurfaces is an essential step to the development of next-generation flat optical components and devices. During the last few years, many attempts have been made to develop tunable optical metasurfaces with dynamic control of optical properties (e.g., amplitude, phase, polarization, spatial/spectral/temporal responses) and early-stage device functions (e.g., beam steering, tunable focusing, tunable color filters/absorber, dynamic hologram, etc) based on a variety of novel active materials and tunable mechanisms. These recently-developed active metasurfaces show significant promise for practical applications, but significant challenges still remain. In this review, a comprehensive overview of recently-reported tunable metasurfaces is provided which focuses on the ten major tunable metasurface mechanisms. For each type of mechanism, the performance metrics on the reported tunable metasurface are outlined, and the capabilities/limitations of each mechanism and its potential for various photonic applications are compared and summarized. This review concludes with discussion of several prospective applications, emerging technologies, and research directions based on the use of tunable optical metasurfaces. We anticipate significant new advances when the tunable mechanisms are further developed in the coming years.
© 2022 IOP Publishing Ltd.

Entities:  

Keywords:  active metasurfaces; metasurfaces; nanophotonics; nonlinear metasurfaces; photonics devices

Year:  2022        PMID: 35244609     DOI: 10.1088/1361-6633/ac2aaf

Source DB:  PubMed          Journal:  Rep Prog Phys        ISSN: 0034-4885


  2 in total

1.  MEMS Tunable Metasurfaces Based on Gap Plasmon or Fabry-Pérot Resonances.

Authors:  Paul C V Thrane; Chao Meng; Fei Ding; Sergey I Bozhevolnyi
Journal:  Nano Lett       Date:  2022-08-18       Impact factor: 12.262

2.  Inverse design of perimeter-controlled InAs-assisted metasurface for two-dimensional dynamic beam steering.

Authors:  Raana Sabri; Hossein Mosallaei
Journal:  Nanophotonics       Date:  2022-09-02       Impact factor: 7.923

  2 in total

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