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Enhancement of terahertz photoconductive antenna operation by optical nanoantennas

机译:光学纳米天线增强太赫兹光电导天线的工作

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摘要

Photoconductive antennas are promising sources of terahertz radiation that is widely used for spectroscopy, characterization, and imaging of biological objects, deep space studies, scanning of surfaces, and detection of potentially hazardous substances. These antennas are compact and allow for generation of both ultrabroadband pulses and tunable continuous wave terahertz signals at room temperatures, with no need for high-power optical sources. However, such antennas have relatively low energy conversion efficiency of femtosecond laser pulses or two close pump wavelengths (photomixers) into the pulsed and continuous terahertz radiation, correspondingly. Recently, an approach to solving this problem that involves known methods of nanophotonics applied to terahertz photoconductive antennas and photomixers has been proposed. This approach comprises the use of optical nanoantennas for enhancing the absorption of pump laser radiation in the antenna gap, reducing the lifetime of photoexcited carriers, and improving the antenna thermal efficiency. This Review is intended to systematize the main results obtained by researchers in this promising field of hybrid optical-to-terahertz photoconductive antennas and photomixers. We summarize the main results on hybrid THz antennas, compare the approaches to their implementation, and offer further perspectives of their development including an application of all-dielectric nanoantennas instead of plasmonic ones.
机译:光电导天线是太赫兹辐射的有希望的来源,已被广泛用于光谱,生物物体的表征和成像,深空研究,表面扫描以及潜在有害物质的检测。这些天线结构紧凑,可在室温下生成超宽带脉冲和可调谐连续波太赫兹信号,而无需使用大功率光源。但是,这种天线具有相对较低的飞秒激光脉冲或两个接近的泵浦波长(光混合器)到脉冲和连续太赫兹辐射的能量转换效率。最近,已经提出了一种解决该问题的方法,该方法涉及应用于太赫兹光电导天线和光混合器的纳米光子学的已知方法。这种方法包括使用光学纳米天线来增强天线间隙中泵浦激光辐射的吸收,减少光激发载流子的寿命以及提高天线热效率。这篇综述旨在系统化研究人员在光-太赫兹混合光电导天线和光混合器这一充满希望的领域中获得的主要结果。我们总结了混合THz天线的主要结果,比较了其实现方法,并提供了其发展的更多观点,包括应用全电介质纳米天线代替等离激元天线。

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