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Dual-Wide-Band Dual Polarization Terahertz Linear to Circular Polarization Converters based on Bi-Layered Transmissive Metasurfaces

机译:基于双层透射元件的双宽带双极化太赫兹线性到圆偏振转换器

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摘要

Transmissive metasurface-based dual-wide-band dual circular polarized operation is needed to facilitate volume and size reduction along with polarization diversity for future THz wireless communication. In this paper, a novel dual-wide-band THz linear polarization to circular polarization (LP-to-CP) converter is proposed using transmissive metasurfaces. It converts incident X polarized waves into transmitted left-hand circular polarized (LHCP) and right-hand circular polarized (RHCP) waves at two frequency bands. The structure consists of bi-layered metasurfaces having an outer conductor square ring and three inner conductor squares diagonally intersecting each other. The proposed converter works equally well with incident Y polarizations. Operational bandwidths for the dual-band LP-to-CP are 1.16 THz to 1.634 THz (34% fractional bandwidth) and 3.935 THz to 5.29 THz (29% fractional bandwidth). The electromagnetic simulation was carried out in two industry-standard software packages, High Frequency Structure Simulator (HFSS) and Computer Simulation Technology (CST), using frequency and time domain solvers respectively. Close agreement between results depicts the validity and reliability of the proposed design. The idea is supported by equivalent circuits and physical mechanisms involved in the dual-wide-band dual polarization operation. The impact of different geometrical parameters of the unit cell on the performance of LP-to-CP operation is also investigated.
机译:基于透射的元表面的双宽带双圆极化操作需要促进减少体积和尺寸以及未来THz无线通信的偏振分集。在本文中,使用透射元件提出了一种新的双宽频带THz线性偏振(LP-TO-CP)转换器。它将入射X偏振波转换为在两个频带处的传输左手圆极化(LHCP)和右手圆极化(RHCP)波。该结构由双层元件组成,具有外导体方环和三个内导体方块彼此对角线相交。所提出的转换器与事件y偏振同样好。双频LP到-CP的操作带宽为1.16THz至1.634 THz(34%分数带宽)和3.935THTH至5.29 THz(29%的分数带宽)。电磁仿真分别在两个行业标准软件包,高频结构模拟器(HFS)和计算机仿真技术(CST)中进行,分别使用频率和时域溶剂进行。结果之间的密切一致性描述了所提出的设计的有效性和可靠性。该想法由参与双宽带双极化操作的等效电路和物理机制支持。还研究了单位电池对LP到CP操作性能的不同几何参数的影响。

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