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首页> 外文期刊>Journal of Vacuum Science & Technology. B, Microelectronics and Nanometer Structure >Metallic tunable photonic crystal filter for terahertz frequencies
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Metallic tunable photonic crystal filter for terahertz frequencies

机译:用于太赫兹频率的金属可调谐光子晶体滤波器

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摘要

A tunable metallic photonic crystal filter has been fabricated by deep reactive ion etching of a silicon substrate followed by metallization. The filter plate's two-layer orthogonal grid structure and integrated mounting lugs were fabricated from a single silicon wafer in two etching steps. A three-step metallization process (evaporation, sputtering, and electroplating) ensured all surfaces were coated with gold to greater than 4.6 times the skin depth at the frequencies of interest. The filter employs a mechanical tuning mechanism, the performance of which was predicted with rigorous full-vector electromagnetic simulations (finite-difference time domain). The prototype has been characterized at frequencies of 70-150 GHz using free-space measurement techniques. Its measured center frequency shifts from 144 to 137 GHz for 300 μm lateral shift of one of the plates, and it has. an insertion loss of less than 1 dB.
机译:通过对硅衬底进行深反应离子刻蚀,然后进行金属化,已经制造出可调谐的金属光子晶体滤波器。滤板的两层正交网格结构和集成安装凸耳是在两个蚀刻步骤中由单个硅片制成的。三步金属化工艺(蒸发,溅射和电镀)确保在感兴趣的频率下,所有表面都镀有金,其厚度大于趋肤深度的4.6倍。该滤波器采用机械调谐机制,其性能是通过严格的全矢量电磁仿真(时域有限差分)预测的。使用自由空间测量技术对原型进行了表征,其频率为70-150 GHz。对于其中一块板的300μm横向位移,它的测量中心频率从144 GHz移至137 GHz,并且具有。插入损耗小于1 dB。

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