一种用于低太赫兹传输的新型保偏反谐振波导

IF 3.9 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Qiyuan Mu;Shijie Wang;Depeng Kong;Yuan Yuan;Zhen Liu
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引用次数: 0

摘要

本文提出了一种基于反谐振机理的高双折射低损耗保偏太赫兹波导,其包层由6个圆管和4个弯曲薄壁组成。水平外管与垂直圆管之间的厚度差异带来了较高的双折射,而嵌套管的结构差异可以进一步改善双折射。此外,嵌套管和四个弯曲的薄壁也减少了波导损耗。仿真结果表明,设计的波导在0.14 THz处的双折射为0.00165,x极化损耗为0.096 dB/cm, y极化损耗为0.104 dB/cm。此外,利用三维打印技术制备的波导具有工作在0.14太赫兹的单频系统和太赫兹时域光谱系统的特点。THz- tds系统的实验结果表明,该波导具有两个低损耗抗谐振窗口(0.13-0.16 THz和0.26-0.33 THz),与仿真结果一致。该波导在0.14 THz处的双折射率为0.0038,两个极化的传输损耗分别为0.17和0.165 dB/cm。此外,该波导的实验x极化损耗为0.077 dB/cm @0.29 THz, y极化损耗为0.073 dB/cm @0.29 THz。单频系统测量的波导偏振比也验证了其保偏能力,0.14 THz波经过波导后,保偏能力从96.81%变为96.46%。这证明我们所提出的波导可以有效地传输低太赫兹波,同时保持入射线极化波的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Polarization-Maintaining Antiresonant Waveguide for Low-Terahertz Transmission
In this article, a high birefringence and low loss polarization-maintaining terahertz waveguide based on the antiresonant mechanism is proposed, of which the cladding comprises six circular tubes and four curved thin walls. The thickness difference between the horizontal outer tubes and the vertical circular tubes brings a high birefringence, which can be further improved by the structural difference attributable to the nested tubes. Moreover, the nested tubes and four curved thin walls also reduce waveguide losses. The simulated results show that the birefringence of the designed waveguide at 0.14 THz is 0.00165, and the x-polarized and y-polarized loss is 0.096 dB/cm and 0.104 dB/cm, respectively. In addition, fabricated waveguides by three-dimensional printing technology are characterized by a single-frequency system working in 0.14 THz and a THz time-domain spectroscopy (THz-TDS) system. The experimental results by the THz-TDS system show that the waveguide has two low-loss antiresonant windows (0.13–0.16 THz and 0.26–0.33 THz), which agree with the simulated results. The birefringence of the waveguide at 0.14 THz is 0.0038, and the transmission loss of the two polarizations is 0.17 and 0.165 dB/cm, respectively. Moreover, the waveguide achieves minimum experimental x-polarized losses of 0.077 dB/cm @0.29 THz and y-polarized losses of 0.073 dB/cm @0.29 THz. The polarization ratio of the waveguide measured by the single-frequency system also verified the polarization-maintaining ability, which changes from 96.81% to 96.46% after the 0.14 THz wave passes through the waveguide. This proves that our proposed waveguide can effectively transmit low-terahertz waves while maintaining the direction of incident linearly polarized waves.
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来源期刊
IEEE Transactions on Terahertz Science and Technology
IEEE Transactions on Terahertz Science and Technology ENGINEERING, ELECTRICAL & ELECTRONIC-OPTICS
CiteScore
7.10
自引率
9.40%
发文量
102
期刊介绍: IEEE Transactions on Terahertz Science and Technology focuses on original research on Terahertz theory, techniques, and applications as they relate to components, devices, circuits, and systems involving the generation, transmission, and detection of Terahertz waves.
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