用于大功率太赫兹产生和高灵敏度太赫兹探测的等离子光导天线

C. Berry, Ning Wang, M. R. Hashemi, M. Jarrahi
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引用次数: 2

摘要

任何太赫兹成像和传感系统都需要高功率源和高灵敏度探测器。将等离子体接触电极结合到光导太赫兹源和探测器中,通过显著提高光导体量子效率,可以提供更高的太赫兹辐射功率和探测灵敏度。这是因为等离子体电极在操纵光导体接触电极附近的光载流子浓度方面具有独特的能力,允许更多的光载流子在太赫兹振荡周期内到达光导体接触电极,从而有效地促进太赫兹辐射和检测。等离子体电极对提高光导太赫兹源和探测器的输出功率和探测灵敏度的影响是普遍的,可以应用于各种类型的光导太赫兹天线中,本文对此进行了总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasmonic photoconductive antennas for high-power terahertz generation and high-sensitivity terahertz detection
High power sources and high sensitivity detectors are in demand for any terahertz imaging and sensing system. Incorporating plasmonic contact electrodes in photoconductive terahertz sources and detectors has proved to offer higher terahertz radiation powers and detection sensitivities by enhancing the photoconductor quantum efficiency significantly. This is because of the unique capability of plasmonic electrodes in manipulating the concentration of photocarriers near photoconductor contact electrodes, allowing a larger number of photocarriers reach photoconductor contact electrodes within a terahertz oscillation cycle to efficiently contribute to terahertz radiation and detection. The impact of plasmonic electrodes on enhancing the output power and detection sensitivity of photoconductive terahertz sources and detectors is universal and can be employed in various types of photoconductive terahertz antennas, as summarized in this article.
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