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Improvement in Power-Handling Capability of Superconducting Filters Using Multi-Layered Microstrip Line Resonators

机译:使用多层微带线谐振器提高超导滤波器的功率处理能力

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We investigated the power-handling capability of superconducting filters using multi-layered microstrip line resonators (MSLRs). A multi-layered MSLR consists of superconducting/insulating/superconducting multi-layered film to improve the power-handling capability of the superconducting filter. The current flowing along the bottom edges of the multi-layered MSLR was less concentrated than that in the conventional MSLR. A 3-pole filter using a straight-type MSLR was designed based on the Chebyshev function to have a center frequency of 5 GHz and a bandwidth of 100 MHz. The single-layered and multi-layered MSLR filters were fabricated with the simulated filter design using NbN single-sided 600-nm thick film and NbN/AlN/NbN single-sided 300/20/300-nm multi-layered film on MgO substrates. Both filters showed good frequency responses at 6.8 K. The input-output relations of both filters at 6.8 K were measured. The power-handling capability of the multi-layered MSLR filter was 1.9 dB larger than that of the single-layered MSLR filter. Thus, the multi-layered MSLR helped to improve the power-handling capability of superconducting filters.
机译:我们研究了使用多层微带线谐振器(MSLR)的超导滤波器的功率处理能力。多层MSLR由超导/绝缘/超导多层薄膜组成,以提高超导滤波器的功率处理能力。沿多层MSLR底部边缘流动的电流不如常规MSLR集中。基于Chebyshev函数设计了使用直型MSLR的3极点滤波器,其中心频率为5 GHz,带宽为100 MHz。单层和多层MSLR滤光片是在MgO基板上使用NbN单面600 nm厚膜和NbN / AlN / NbN单面300/20/300 nm多层膜并通过模拟滤光片设计制成的。两个滤波器在6.8 K时均显示出良好的频率响应。测量了两个滤波器在6.8 K时的输入输出关系。多层MSLR滤波器的功率处理能力比单层MSLR滤波器大1.9 dB。因此,多层MSLR有助于提高超导滤波器的功率处理能力。

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