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一种实现中红外非对称传输的手征超表面设计
引用本文:肖桐,田昌会,王军,孟真,范琦,高志强,谢晓伟,田晓霞. 一种实现中红外非对称传输的手征超表面设计[J]. 红外技术, 2021, 43(3): 272-278
作者姓名:肖桐  田昌会  王军  孟真  范琦  高志强  谢晓伟  田晓霞
作者单位:空军工程大学基础部,陕西 西安 710051
基金项目:陕西省自然科学基础研究计划资助项目(2019JZ-40)。
摘    要:为了研究手征超表面在中红外波段的非对称传输特性,设计了一种基于L型结构的手征超表面单元.利用CST电磁软件进行仿真分析,结果表明在68.92~88.68 THz范围内非对称传输参数大于0.8,在73.25 THz处非对称传输参数达到极值为0.88,由此可知该结构在中红外波段具有良好的非对称传输特性;通过分析表面电流分布...

关 键 词:非对称传输  手征超表面  线偏振  中红外
收稿时间:2020-07-08

Chiral Metasurface Designed for the AsymmetricTransmission of the Mid-infrared Band
XIAO Tong,TIAN Changhui,WANG Jun,MENG Zhen,FAN Qi,GAO Zhiqiang,XIE Xiaowei,TIAN Xiaoxia. Chiral Metasurface Designed for the AsymmetricTransmission of the Mid-infrared Band[J]. Infrared Technology, 2021, 43(3): 272-278
Authors:XIAO Tong  TIAN Changhui  WANG Jun  MENG Zhen  FAN Qi  GAO Zhiqiang  XIE Xiaowei  TIAN Xiaoxia
Affiliation:Department of Basic Science, Air Force Engineering University, Xi'an 710051, China
Abstract:To study the asymmetric transmission characteristics of the chiral metasurface in the mid-infrared band,a chiral metasurface unit based on an L-shaped structure isdesigned.A simulation analysis using CST electromagnetic software reveals that the asymmetric transmission parameter is greater than 0.8 in the range of 68.92-88.68 THz and reaches the extreme value of 0.88 at 73.25 THz.It can be observedthat the structure exhibits good performance in terms of asymmetric transmission in the mid-infrared band.The polarization selective reflection and cross-polarization transmission mechanism of the chiral metasurface are clarified by analyzing the surface current distribution and phase distribution of the transmission field.The relationship between the chiral strength of the unit structure and the asymmetric transmission characteristics is also discussed.The influence of the thickness of the dielectric and metal layers and the incident angle of the electromagnetic wave on the asymmetric transmission characteristics is examined.
Keywords:asymmetric transmission  chiral hypersurface  linear polarization  mid-infrared
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