Litcius/Paper detail

Transmission‐Reflection Controls and Polarization Controls of Electromagnetic Holograms by a Reconfigurable Anisotropic Digital Coding Metasurface

Liang Wu, Hui Feng, Rui Yuan Wu, Qiang Xiao, Yue Gou, Meng Wang, Zheng Xing Wang, Lei Bao, Hai Lin Wang, Ye Ming Qing, Tie Jun Cui

2020Advanced Optical Materials102 citationsDOI

Abstract

Abstract Digital coding metasurface, which provides a new approach to link the physical world and information science, has been quickly developed in recent years. However, all previously reported metasurfaces cannot achieve independent controls of different polarizations in both transmission and reflection spaces at the same time. In this work, a reconfigurable anisotropic digital coding metasurface loaded with electronically controlled PIN diodes is proposed that can independently manipulate not only the near/far‐field pattern but also the transmission and reflection modes of the electromagnetic waves under different polarizations. As a validation example, a multifunctional holographic imaging metasurface is designed, fabricated, and measured. Both simulated and measured results show that orthogonally polarized waves (vertical and horizontal polarizations) can be manipulated to achieve different images, and the transmission and reflection modes of the differently‐polarized images can be independently controlled in real time by changing the state of the loaded PIN diodes.

Topics & Concepts

HolographyPolarization (electrochemistry)OpticsReflection (computer programming)PIN diodeTransmission (telecommunications)Materials scienceAnisotropyCoding (social sciences)OptoelectronicsElectromagnetic radiationDiodePhysicsComputer scienceTelecommunicationsStatisticsChemistryProgramming languageMathematicsPhysical chemistryMetamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface TechnologiesAntenna Design and Analysis