Cascaded-optimum Matching Layer for Planar Bowtie Terahertz Antenna on Extended Hemispherical High Dielectric Lens

A. P. Aji, C. Apriono, F. Zulkifli, E. Rahardjo
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引用次数: 4

Abstract

Development of THz technology has been an interest research topic over the past decade due to its unique radiation characteristic. Recent development in THz technology enables THz radiation for various imaging applications such as remote sensing, biomedical and security detection because it has decent advantages over the old techniques of X-Ray and microwave imaging. For imaging applications, a system must meet the requirement of a high gain or narrow beamwidth radiation to produce a high-resolution spectra output. A high radiation efficiency is also the considered parameter because it will affect the amount of the radiated energy to the target. The matching layer (ML) technique is a common technique to minimize the internal reflections and improve the radiation efficiency performance of the optical based antenna such as lens. In the previous research, we have studied a bow-tie planar antenna combined with Silicon dielectric substrate and extended hemispherical lens for 1 THz resonant frequency. The ML method has also been applied in both single and cascaded technique to increase the radiation efficiency. However, the complexity of the design is one of the main concern because high number of stacked MLs used to achieve maximum radiation efficiency. In this paper, we study the effect of an optimum ML to the lens antenna. An optimum ML has different layer thickness among the lens surface to covers the different angle of incidence. From the simulation results, radiation efficiency can be increased up to 92.06% while the high gain performance can be kept consistent around 32 dB with a narrow beamwidth of below 3°. It shows that our proposed design is suitable for future THz imaging applications.
扩展半球面高介电透镜上平面领结太赫兹天线的级联优化匹配层
太赫兹技术由于其独特的辐射特性,在过去的十年中一直是人们感兴趣的研究课题。太赫兹技术的最新发展使太赫兹辐射能够用于各种成像应用,如遥感、生物医学和安全探测,因为它比x射线和微波成像的旧技术具有相当的优势。对于成像应用,系统必须满足高增益或窄波束宽度辐射的要求,以产生高分辨率的光谱输出。高辐射效率也是考虑的参数,因为它会影响辐射到目标的能量。匹配层技术是透镜等光学基天线减小内部反射、提高辐射效率的常用技术。在之前的研究中,我们研究了一种谐振频率为1thz的由硅介质衬底和扩展半球透镜组成的领结平面天线。该方法也被应用于单级和级联技术,以提高辐射效率。然而,设计的复杂性是主要问题之一,因为要实现最大的辐射效率,需要使用大量堆叠的MLs。在本文中,我们研究了一个最佳的ML对透镜天线的影响。最佳的透镜表面有不同的层厚以覆盖不同的入射角。仿真结果表明,在小于3°的窄波束宽度下,辐射效率可提高92.06%,高增益性能保持在32 dB左右。这表明我们的设计适合未来的太赫兹成像应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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