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Polarization Conversion Based on Mie-Type Electromagnetically Induced Transparency (EIT) Effect in All-Dielectric Metasurface
Authors:Lei Zhu  Liang Dong  Jing Guo  Fan-Yi Meng  Xun Jun He  Chun Hui Zhao  Qun Wu
Affiliation:1.Communication and Electronics Engineering Institute,Qiqihar University,Qiqihar,China;2.College of Information and Communication Engineering,Harbin Engineering University,Harbin,China;3.School of Electronic Engineering,Beijing University of Posts and Telecommunications,Beijing,China;4.Science and Technology on Electronic Test & Measurement Laboratory, Ministry of Education,North University of China,Taiyuan,China;5.Electronics and Information Institute,Harbin Institute of Technology,Harbin,China;6.Department of Electronic Science and technology,Harbin University of Science and Technology,Harbin,China
Abstract:In this paper, we propose an all-dielectric metasurface to realize the linear-to-circular polarization conversion of resonantly transmitted waves. This metasurface is composed of two intersection bars and four circle bricks. It has numerically demonstrated that the electromagnetic (EM) couplings between dielectric bar and bricks lead to the famous electromagnetically induced transparent (EIT) effect. Subsequently, based on Mie-type EIT resonances for two incident polarizations, the linear-to-circular polarization conversion occur at about 0.47 THz. More importantly, the thickness of our device is subwavelength and it is very transparency for EM waves. We also investigate the dependences of device performance on incident angles of EM waves and structure thicknesses. Device good performance is almost kept at about 0.47 THz for slightly incident angle tilts (θ ≤?30°) and tiny changes of substrate thickness. But device performance is strongly dependent on dielectric thickness. These results are very important for its integration to the existing terahertz devices, or its application to future polarization controls.
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