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首页> 外文期刊>Microwave and optical technology letters >High performance terahertz slotted waveguide antenna based on electrically split ring resonator metasurface employing low epsilon medium for E-plane beam focusing
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High performance terahertz slotted waveguide antenna based on electrically split ring resonator metasurface employing low epsilon medium for E-plane beam focusing

机译:高性能Terahertz开槽波导天线基于电动旋转环谐振器元表面,采用低ε介质的E面光梁聚焦

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摘要

In this article, a high performance terahertz slotted waveguide antenna incorporated with three dimension anisotropic low epsilon medium (LEM) is proposed, designed and theoretically investigated. The LEM is constructed from multilayer two dimension structure of electrically split ring resonator (eSRR) metasurface which exhibits anisotropic LEM medium in direction of propagation when it is placed in front of the slotted waveguide antenna at optimum distance. As a result, the E-plane radiation beam of the slotted waveguide antenna is focused, and hence the directivity and the gain are improved, while the beam area is reduced. The proposed antenna as well as the LEM structure operating at 303 GHz are designed, optimized, and numerically simulated by using CST software. The effective parameters of the eSRR structure are extracted by Nicolson Ross Weir algorithm from the S-parameters. The simulated results showed that, the E-plane gain of the proposed slotted waveguide antenna is improved from 6.7 to 10.1 dB compared with the conventional slotted waveguide antenna. In addition, the E-plane beam width is reduced from 94.1 degrees to about 47 degrees. The antenna return loss and the bandwidth are slightly changed. Furthermore, the proposed THz antenna offered easier fabrication processes with a high gain if it is compared with the horn antenna of the same size.
机译:在本文中,提出了一种高性能的Terahertz开槽波导天线,其包含三维各向异性低ε介质(LEM),设计和理论研究。 lem由多层两个尺寸结构构成,电分裂环谐振器(ESRR)质量表面,当其在最佳距离处放置在开槽波导天线的前面时,在传播方向上表现出各向异性LEM介质。结果,聚焦波导天线的E面辐射束聚焦,因此提高了方向性和增益,而梁面积减小。通过使用CST软件,设计,优化和数值模拟所提出的天线以及操作于303GHz的LEM结构。从S参数中,尼科尔森罗斯WEIR算法提取了ESRR结构的有效参数。模拟结果表明,与传统的开槽波导天线相比,所提出的开槽波导天线的E平面增益从6.7到10.1dB提高。另外,E面光束宽度从94.1度降低到约47度。天线返回损耗和带宽略有变化。此外,如果将其与相同尺寸的喇叭天线进行比较,则所提出的THz天线提供具有高增益的更容易的制造过程。

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