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用于线性偏振转换和跨越X波段与K波段的非对称传输的超宽带设计。

Ultrabroadband Design for Linear Polarization Conversion and Asymmetric Transmission Crossing X- and K- Band.

作者信息

Zhang Linbo, Zhou Peiheng, Chen Haiyan, Lu Haipeng, Xie Haiyan, Zhang Li, Li En, Xie Jianliang, Deng Longjiang

机构信息

National Engineering Research Center of Electromagnetic Radiation Control Materials, State Key Laboratory of Electronic Thin Film and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, China.

School of Electronic Engineering, University of Electronic Science and Technology of China, Chengdu 610054, China.

出版信息

Sci Rep. 2016 Sep 23;6:33826. doi: 10.1038/srep33826.

Abstract

In this work, a high-efficiency and broadband reflective converter using ultrathin planar metamaterial (MM) composed of single-layered SRR is firstly realized. Numerical and experimental results demonstrate that the cross-polarization conversion reflectance above 0.84 is achieved from 8.6 to 18.6 GHz for linearly polarized (LP) incident waves under normal incidence. Subsequently, a multi-layered MM based on SRR enables a dramatic improvement of the recently demonstrated asymmetric transmission (AT) effect. Theoretical and measured results present that strong one-way transmission of two orthogonally polarized waves crossing C- and K- band has been observed. These two separated AT pass-bands have a function of selective polarization filter, which can be switched on/off by changing the polarization state of incident waves. The physical mechanisms are elucidated by taking advantage of electric fields and current distributions. Considering the broad bandwidth and the dual band, we believe that these two structures will be beneficial for designing polarization-controlled and selective transmission converter.

摘要

在这项工作中,首次实现了一种使用由单层开口谐振环(SRR)组成的超薄平面超材料(MM)的高效宽带反射转换器。数值和实验结果表明,对于垂直入射的线偏振(LP)入射波,在8.6至18.6 GHz范围内实现了高于0.84的交叉极化转换反射率。随后,基于SRR的多层MM显著改善了最近展示的非对称传输(AT)效应。理论和测量结果表明,已观察到两个正交偏振波在C波段和K波段交叉时的强单向传输。这两个分离的AT通带具有选择性偏振滤波器的功能,可以通过改变入射波的偏振状态来开启/关闭。利用电场和电流分布阐明了物理机制。考虑到宽带宽和双频段,我们相信这两种结构将有利于设计偏振控制和选择性传输转换器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b209/5034340/dd72629a1b1d/srep33826-f1.jpg

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