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首页> 外文期刊>Nature Communications >Significant performance enhancement in photoconductive terahertz optoelectronics by incorporating plasmonic contact electrodes
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Significant performance enhancement in photoconductive terahertz optoelectronics by incorporating plasmonic contact electrodes

机译:通过引入等离子体接触电极,可显着提高光电导太赫兹光电器件的性能

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摘要

Even though the terahertz spectrum is well suited for chemical identification, material characterization, biological sensing and medical imaging, practical development of these applications has been hindered by attributes of existing terahertz optoelectronics. Here we demonstrate that the use of plasmonic contact electrodes can significantly mitigate the low-quantum efficiency performance of photoconductive terahertz optoelectronics. The use of plasmonic contact electrodes offers nanoscale carrier transport path lengths for the majority of photocarriers, increasing the number of collected photocarriers in a subpicosecond timescale and, thus, enhancing the optical-to-terahertz conversion efficiency of photoconductive terahertz emitters and the detection sensitivity of photoconductive terahertz detectors. We experimentally demonstrate 50 times higher terahertz radiation powers from a plasmonic photoconductive emitter in comparison with a similar photoconductive emitter with non-plasmonic contact electrodes, as well as 30 times higher terahertz detection sensitivities from a plasmonic photoconductive detector in comparison with a similar photoconductive detector with non-plasmonic contact electrodes.
机译:尽管太赫兹光谱非常适合于化学识别,材料表征,生物传感和医学成像,但是这些应用的实际开发受到了现有太赫兹光电技术的阻碍。在这里,我们证明等离子接触电极的使用可以显着减轻光电导太赫兹光电器件的低量子效率性能。等离子体接触电极的使用为大多数光电载流子提供了纳米级载流子传输路径长度,从而在亚皮秒级的时间内增加了所收集的光电载流子的数量,从而提高了光电导太赫兹发射器的光电到太赫兹转换效率,并提高了检测灵敏度。光电导太赫兹探测器。我们通过实验证明,与具有非等离子接触电极的类似光电导发射器相比,等离子光电导发射器的太赫兹辐射功率高50倍,与等离子光电导检测器相比,等离子光电导探测器的太赫兹检测灵敏度高30倍。非等离子体接触电极。

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