Design of Circularly Polarized Antenna Loaded with Reflective Polarization Conversion Metasurface

Author(s):  
Yan Chen ◽  
Xiaoxiang He ◽  
Yang Yang
2019 ◽  
Vol 29 (6) ◽  
pp. e21669
Author(s):  
Zhiming Liu ◽  
Shaobin Liu ◽  
Xiangkun Kong ◽  
Zhengyu Huang ◽  
Xing Zhao ◽  
...  

2017 ◽  
Vol 2017 ◽  
pp. 1-10
Author(s):  
Hong-Yu Shi ◽  
Wei Li ◽  
Shi-Tao Zhu ◽  
Xiao-Li Dong ◽  
An-Xue Zhang ◽  
...  

This paper presents a broadband circular polarizer with a ring/disk cavity structure, which is a broadband application of plasmon hybridizations. The proposed design can convert a linearly polarized wave to a circularly polarized wave from 12.66 GHz to 17.43 GHz within a bandwidth of 30%. The broadband polarization conversion characterization results from the different plasmon hybridization modes induced in the ring/disk cavity. The proposed broadband circular polarizer is demonstrated by both full-wave simulation and measurement.


2021 ◽  
Vol 2021 ◽  
pp. 1-10
Author(s):  
Chun-Hong Chen ◽  
Pei-Yang Wang ◽  
Jun Chen ◽  
Ting Xu

A single-layer capsule-shaped polarization conversion metasurface (PCM) is proposed in this paper. In the W-band, its polarization conversion rate (PCR) exceeds 97%, effectively changing the polarization direction of the incident wave. PCM is arranged in a chessboard array to achieve broadband RCS reduction. Placing the PCM array on a circularly polarized sequentially rotated slot antenna array, simulated results show that the radiation characteristics of the antenna array are hardly affected by the PCM array. The results of measurement demonstrate that the RCS of the antenna array with PCM array proposed is reduced by more than 10 dB from 40 to 119 GHz; the relative bandwidth (−10 dB) reaches 96.3%.


2018 ◽  
Vol 32 (10) ◽  
pp. 1850124
Author(s):  
Mengchao Guo ◽  
Kan Zhou ◽  
Xiaokun Wang ◽  
Haiyan Zhuang ◽  
Dongming Tang ◽  
...  

In this paper, the impact of coupling between unit cells on the performance of linear-to-circular polarization conversion metamaterial with half transmission and half reflection is analyzed by changing the distance between the unit cells. An equivalent electrical circuit model is then built to explain it based on the analysis. The simulated results show that, when the distance between the unit cells is 23 mm, this metamaterial converts half of the incident linearly-polarized wave into reflected left-hand circularly-polarized wave and converts the other half of it into transmitted left-hand circularly-polarized wave at 4.4 GHz; when the distance is 28 mm, this metamaterial reflects all of the incident linearly-polarized wave at 4.4 GHz; and when the distance is 32 mm, this metamaterial converts half of the incident linearly-polarized wave into reflected right-hand circularly-polarized wave and converts the other half of it into transmitted right-hand circularly-polarized wave at 4.4 GHz. The tunability is realized successfully. The analysis shows that the changes of coupling between unit cells lead to the changes of performance of this metamaterial. The coupling between the unit cells is then considered when building the equivalent electrical circuit model. The built equivalent electrical circuit model can be used to perfectly explain the simulated results, which confirms the validity of it. It can also give help to the design of tunable polarization conversion metamaterials.


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