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Influence of impedance mismatch effects on measurements of unloaded Q factors of transmission mode dielectric resonators

机译:阻抗失配效应对传输模式介质谐振器空载Q因子测量的影响

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摘要

Precise measurements of the surface resistance of high temperature superconducting (HTS) thin films using transmission mode dielectric resonators requires accurate knowledge of the unloaded Q factor (Q/sub o/). So far, the most accurate method of Q/sub o/ determination for transmission mode resonators is the transmission mode Q factor (TMQF) technique based on the processing of S-parameters (S/sub 21/, S/sub 11/, S/sub 22/). The technique accounts for parasitic effects including noise, crosstalk, coupling reactance and coupling losses but does not yet take into account the impedance mismatch between the test ports of the vector network analyzer and the inputs to the resonator. Discrepancies between measured and ideal S-parameters due to the mismatch lead to inaccuracies in coupling coefficient computations. This causes undesirable error in the calculated Q/sub o/. We present measurements of Q/sub o/ obtained using the TMQF technique for mismatched and matched connections between the test ports of the vector network analyzer and the inputs to the dielectric resonator. These results are compared with values obtained using the traditional insertion loss method.
机译:使用传输模式介电共振器精确测量高温超导(HTS)薄膜的表面电阻需要准确了解空载Q因子(Q / sub o /)。到目前为止,用于传输模式谐振器的最精确的Q / sub o /确定方法是基于S参数(S / sub 21 /,S / sub 11 /,S)处理的传输模式Q因子(TMQF)技术。 / sub 22 /)。该技术考虑了包括噪声,串扰,耦合电抗和耦合损耗在内的寄生效应,但尚未考虑矢量网络分析仪测试端口与谐振器输入之间的阻抗失配。由于不匹配而导致的实测S参数与理想S参数之间的差异会导致耦合系数计算的不准确。这在计算的Q / sub o /中引起不希望的误差。我们介绍了使用TMQF技术获得的Q / sub o /的测量结果,用于矢量网络分析仪的测试端口与介电谐振器输入之间的不匹配和匹配连接。将这些结果与使用传统插入损耗法获得的值进行比较。

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