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Nano-antenna in a photoconductive photomixer for highly efficient continuous wave terahertz emission

机译:光电导混合器中的纳米天线可实现高效连续波太赫兹发射

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摘要

We report highly efficient continuous-wave terahertz (THz) photoconductive antenna based photomixer employing nano-gap electrodes in the active region. The tip-to-tip nano-gap electrode structure provides strong THz field enhancement and acts as a nano-antenna to radiate the THz wave generated in the active region of the photomixer. In addition, it provides good impedance matching to the THz planar antenna and exhibits a lower RC time constant, allowing more efficient radiation especially at the higher part of the THz spectrum. As a result, the output intensity of the photomixer with the new nano-gap electrode structure in the active region is two orders of magnitude higher than that of a photomixer with typical interdigitated electrodes. Significant improvement in the THz emission bandwidth was also observed. An efficient continuous wave THz source will greatly benefit compact THz system development for high resolution THz spectroscopy and imaging applications.
机译:我们报告了在有源区域采用纳米间隙电极的高效连续波太赫兹(THz)光导天线基于光混合器。尖端到尖端的纳米间隙电极结构可提供强大的太赫兹场增强,并充当纳米天线以辐射在光混合器的有源区域中产生的太赫兹波。此外,它与THz平面天线具有良好的阻抗匹配性,并具有较低的RC时间常数,从而允许更有效的辐射,尤其是在THz频谱的较高部分。结果,在有源区中具有新的纳米间隙电极结构的光混合器的输出强度比具有典型的叉指状电极的光混合器的输出强度高两个数量级。还观察到太赫兹发射带宽的显着改善。高效的连续波太赫兹源将极大地有利于紧凑型太赫兹系统开发,用于高分辨率太赫兹光谱学和成像应用。

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