Wideband and high-efficiency planar chiral structure design for asymmetric transmission and linear polarization conversion

2020 ◽  
Vol 127 (2) ◽  
pp. 023104 ◽  
Author(s):  
Fei Long ◽  
Shixing Yu ◽  
Na Kou ◽  
Can Zhang ◽  
Zhao Ding ◽  
...  
2019 ◽  
Vol 56 (9) ◽  
pp. 092401
Author(s):  
张灿 Zhang Can ◽  
余世星 Yu Shixing ◽  
龙飞 Long Fei ◽  
杨晓昆 Yang Xiaokun ◽  
张正平 Zhang Zhengping

2021 ◽  
Vol 9 ◽  
Author(s):  
Yu Tian ◽  
Zhiwei Chen ◽  
Fang-Fang Ren ◽  
Qingguo Du ◽  
Zhengying Li

Designing and fabricating high-performance polarization converters that exhibit asymmetric transmission (AT), for light with different circularly/linearly polarized states with opposite propagating directions, are in high demand. The AT phenomenon leads to potential applications as isolators and circulators in information and communication systems. We propose a chiral metamaterial structure with high AT efficiency for two types of linearly orthogonal polarized red-near-IR light in two opposite incident directions. Theoretical results showed that the proposed chiral metamaterial structure achieves cross-polarization conversion where the polarization conversion ratio (PCR) is over 90%, in a broadband wavelength range from 715 to 810 nm, for both forward-propagating linearly polarized light and backward-propagating orthogonal linearly polarized light. The physical mechanisms of the polarization converter with the AT have been investigated. It was confirmed that the Fabry–Perot-like resonance and coupling between electric and magnetic dipoles lead to highly efficient asymmetric polarization conversion for two orthogonal linearly polarized light. Additionally, the conversion efficiency and bandwidth of the polarization converter are successfully optimized by adjusting the related structure parameters.


2019 ◽  
Vol 9 (9) ◽  
pp. 1910 ◽  
Author(s):  
Changfeng Fu ◽  
Zhijie Sun ◽  
Lianfu Han ◽  
Chao Liu ◽  
Tao Sun ◽  
...  

A dual-broadband and high-efficiency reflective linear polarization converter based on an anisotropic metasurface is presented. The device consists of two symmetrical, double-slotted metallic split-rings and one criss-cross structure, a dielectric layer, and a completely reflective metallic ground. The converter exhibits four resonances and can near-perfectly convert x- or y-polarized incident waves into cross-polarized waves in the frequency ranges of 9.38–13.36 GHz and 14.84–20.36 GHz. The polarization conversion ratios (PCRs) of the two bands are 98.21% and 99.32%, respectively. The energy conversion ratio (ECR) for energy loss measurement is almost 100% in these frequency bands. The polarization conversion principle is studied. The bandwidths and PCRs of the two bands are determined by varying the dielectric layer thickness. The simulation results are consistent with experimental observations. The designed dual-broadband and high-efficiency metasurface has great potential in the application of electromagnetic polarization control.


2016 ◽  
Vol 6 (1) ◽  
Author(s):  
Linbo Zhang ◽  
Peiheng Zhou ◽  
Haiyan Chen ◽  
Haipeng Lu ◽  
Haiyan Xie ◽  
...  

2020 ◽  
Author(s):  
Yaxian Guo ◽  
◽  
Jianchun Xu ◽  
Chuwen Lan ◽  
Ke Bi ◽  
...  

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