4.6 Article

Magnetically controllable holographic encryption based on a magneto-optical metasurface

期刊

OPTICS EXPRESS
卷 30, 期 5, 页码 8366-8375

出版社

Optica Publishing Group
DOI: 10.1364/OE.454078

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资金

  1. National Key Research and Development Program of China [2021YFA1401200]
  2. Beijing Outstanding Young Scientist Program [BJJWZYJH01201910007022]
  3. National Natural Science Foundation of China [U21A20140, 92050117]
  4. Fok Ying Tung Education Foundation [161009]
  5. Beijing Municipal Science and Technology Commission
  6. Administrative Commission of Zhongguancun Science Park [Z211100004821009]

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The magneto-optical metasurface is a nanophotonic device with great potential that can dynamically modulate the properties of light, achieving effects such as dynamic switching of holographic display.
As a flexible and compact nanophotonic device, the metasurface exhibits excellent potential in holographic display and optical information encryption. However, most metasurfaces are passive devices due to the limitations of fixed material properties and structural components. Magneto-optical metasurface is a hybrid device that integrates tunable functional material with elaborately designed nanostructures. It can realize dynamic modulation of the properties of light since the permittivity tensor for the magneto-optical material can be changed by applying an external magnetic field. Here, we propose a tunable metasurface composing metallic nanohole arrays with a bismuth-substituted yttrium iron garnet interleave layer and a metallic film underlayer placed on a glass substrate. The magneto-optical metasurface can achieve dynamic switchable holographic display in different polarization channels via magnetic field control based on the optical rotation of magnetic material and the complex amplitude modulation of the elaborately designed nanoholes. This feature provides a novel approach for the construction of an active tunable metasurface, which can improve the information storage capacity and security of the device. This concept is expected to be applied to various dynamic modulation fields, such as magnetically tunable lens, beam shaping, and optical information encryption. (C) 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement

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