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Improvement of Terahertz Photoconductive Antenna using Optical Antenna Array of ZnO Nanorods

机译:ZnO纳米棒光学天线阵列对太赫兹光电导天线的改进

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摘要

An efficient terahertz (THz) photoconductive antenna (PCA), as a major constituent for the generation or detection of THz waves, plays an essential role in bridging microwave-to-photonic gaps. Here, we propose an impressive approach comprising the use of arrayed zinc oxide nanorods (ZnO NRs) as an optical nanoantenna over an anti-reflective layer (silicon nitride) in the antenna gap to boost the photocurrent and consequently the THz signal. The numerical approach applied in investigating the optical behavior of the structure, demonstrates a significant field enhancement within the LT-GaAs layer due to the optical antenna performing simultaneously as a concentrator and an antireflector which behaves as a graded-refractive index layer. ZnO NRs have been fabricated on the PCA gap using the hydrothermal method as a simple, low cost and production compatible fabrication method compared to other complex methods used for the optical nanoantennas. Compared to the conventional PCA with a traditional antireflection coating, the measured THz power by time domain spectroscopy (TDS) is increased more than 4 times on average over the 0.1–1.2 THz range.
机译:高效太赫兹(THz)光电导天线(PCA)作为产生或检测THz波的主要成分,在弥合微波到光子间隙方面起着至关重要的作用。在这里,我们提出了一种令人印象深刻的方法,其中包括使用阵列氧化锌纳米棒(ZnO NRs)作为天线间隙中抗反射层(氮化硅)上方的光学纳米天线,以提高光电流,从而提高THz信号。用于研究结构的光学行为的数值方法证明了LT-GaAs层内的显着场增强,这是因为光学天线同时充当聚光器和充当渐变折射率层的抗反射器。与用于光学纳米天线的其他复杂方法相比,ZnO NRs是使用水热法在PCA间隙上制造的,是一种简单,低成本且可与生产兼容的制造方法。与具有传统抗反射涂层的传统PCA相比,通过时域光谱(TDS)测得的THz功率在0.1–1.2 THz范围内平均增加了4倍以上。

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