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Measurement of the absolute penetration depth and surface resistance of superconductors using the variable spacing parallel plate resonator

机译:使用可变间距平行板谐振器测量超导体的绝对穿透深度和表面电阻

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We have developed a modified Parallel Plate Transmission Line Resonator with a smoothly variable thickness of the dielectric spacer filled by liquid nitrogen. A cryogenic linear stage is made to vary the spacer from 200 /spl mu/m down to contact with 0.1 /spl mu/m resolution. Estimates of the absolute penetration depth and the surface resistance are based on the analysis of the spacer thickness dependencies of the resonator frequency and Q-factor. The measurements are performed at fixed temperature (77 K), so the result does not depend on an a priori model for the temperature dependence of the penetration depth. The ability of this technique to be employed as a standard for characterization of HTS films for microwave applications is pointed out.
机译:我们已经开发出一种改进的平行板传输线谐振器,该谐振器具有平滑可变厚度的液氮填充的电介质垫片。制作了一个低温线性平台,可将间隔物从200 / spl mu / m降低到以0.1 / spl mu / m的分辨率接触。绝对穿透深度和表面电阻的估计是基于对谐振器频率和Q因子的垫片厚度依赖性的分析得出的。测量是在固定温度(77 K)下进行的,因此结果不取决于穿透深度与温度的先验模型。指出了该技术作为表征微波应用高温超导薄膜的标准的能力。

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