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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Significant performance enhancement in continuous wave terahertz photomixers based on fractal structures
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Significant performance enhancement in continuous wave terahertz photomixers based on fractal structures

机译:基于分形结构的连续波太赫兹光学器的显着性能增强

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摘要

A photoconductive fractal antenna significantly improves the performance of photomixing-based continuous wave (CW) terahertz (THz) systems. An analysis has been carried out for the generation of CW-THz radiation by photomixer photoconductive antenna technique. To increase the active area for generation and hence the THz radiation power we used interdigitated electrodes that are coupled with a fractal tree antenna. In this paper, both semiconductor and electromagnetic problems are considered. Here, photomixer devices with Thue-Morse fractal tree antennas in two configurations (narrow and wide) are discussed. This new approach gives better performance, especially in the increasing of THz output power of photomixer devices, when compared with the conventional structures. In addition, applying the interdigitated electrodes improved THz photocurrent, considerably. It produces THz radiation power several times higher than the photomixers with simple gap.
机译:感光性分形天线显着提高了光掩模的连续波(CW)太赫兹(THz)系统的性能。 通过光电导光器天线技术对CW-THz辐射产生的分析进行了分析。 为了增加产生的有源区域,因此使用与分形树天线耦合的交叉电极的THz辐射动力。 在本文中,考虑了半导体和电磁问题。 这里,讨论了具有Thue-Morse分形树天线的光学混销器件(窄和宽)。 与传统结构相比,这种新方法具有更好的性能,特别是在光学器设备的THz输出功率的增加。 另外,施加互指电极改善了光电流,显着。 它产生的辐射功率比具有简单间隙的光学器仪高出几倍。

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