论文标题

宽带低调线性交叉偏振器用于毫米波应用

A wide band low profile linear cross polarizer for millimeter wave applications

论文作者

Hajitabarmarznaki, Shiva, Ahmadi-Boroujeni, Mehdi, Shojaeian, Seyedeh Zahra, Nazifi, Rana, Mirzaei, Seyed Iman, Fardmanesh, Mehdi

论文摘要

在本文中,提出并测试了基于不对称的拆分谐振器(ASRR),在传输模式下,在传输模式下作为线性交叉偏振器作为线性交叉偏振器(ASRR)中的两个宽带高效元面结构并进行了测试,以表明这不是纯粹的理论工作。第一个结构的单元由介电层底部的双极化敏感的S形谐振器(SRS)组成。该提出的结构的优越性是其过滤特性和谐振频率100 GHz的高转化效率,其交叉透射系数达到0.87。模拟结果表明,在86至139 GHz的频率范围内,极化转化率(PCR)超过85%。另外,第二个结构由电线网格阵列作为底层组成。该结构具有极低的共偏透射振幅,代表了跨方向上良好的极化变压器。此外,与第一个提出的偏振器相比,该结构的频率范围超过95%,其频率范围超过95%,具有更大的相对带宽。在X极化EM波的倾斜入射中,两种极化器的性能都具有非常弱的角度依赖性,并从.1.这些提出的极化器的原型中进行了制造,并且已经观察到了实验结果和模拟结果之间的良好一致性。这些提出的结构可以在MM波和THZ传感和成像系统中找到应用,从而受益于极化测量。

In this article, two wide band high-efficiency metasurface structures as a linear-cross polarizer in transmission mode based on asymmetric split-ring resonators (ASRR) are proposed and tested to indicate that this is not a purely theoretical work. A unit cell of the first structure consists of double polarization-sensitive S-shape resonators (SRs) on the bottom side of the dielectric layer. The superiority of this proposed structure is its filtering property and high conversion efficiency at its resonant frequency, 100 GHz, where its cross-polarized transmission coefficient reaches 0.87. The simulation results show that the polarization conversion ratio (PCR) exceeds 85% in the frequency range of 86 to 139 GHz. Additionally, the second structure consistsed of a wire-grid array as the bottom layer. This structure has extremely low co-polarized transmission amplitude which represents a good polarization transformer in cross-direction. Furthermore, this structure has a polarization conversion ration more than 95% in frequency range of 50 to 200GHz, having wider relative bandwidth compared to the first proposed polarizer. The performance of both polarizers has very weak angular dependence under the oblique incident of x-polarized EM wave with from to .A prototype of these proposed polarizers has been fabricated and a good agreement between experimental and simulation results has been observed. These proposed structures can find application in mm-wave and THz sensing and imaging systems which benefit from polarimetric measurements.

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