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Coupled-grain/RSJ series array for modeling of nonlinear microwavesurface impedance of YBCO thin films

机译:耦合晶粒/ RSJ系列阵列用于YBCO薄膜非线性微波表面阻抗建模

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The nonlinear microwave impedance of YBCO thin films may be due to Josephson-junction-like defects. In this work, high-Tc thin films are modeled as a series of ideal superconducting grains coupled by resistively shunted Josephson junctions that simulate the defects. The model calculates the surface resistance and reactance as a function of microwave current. Comparisons with experimental results from YBCO thin-film stripline resonators show good quantitative agreement for resistance at frequencies in the range 1-6 GHz and at several temperatures. Long junction effects are proposed to explain deviations between measured and computed results above 6 GHz. We have also modeled a phase-shifting device consisting of 300 high-Tc Josephson junctions in series along a microstrip transmission line. Computed results are in good quantitative agreement with the measured device phase shift versus microwave input power. Similarities in the power dependencies of the series array of junctions and the patterned film resonators are discussed
机译:YBCO薄膜的非线性微波阻抗可能是由于类似约瑟夫森结的缺陷所致。在这项工作中,将高Tc薄膜建模为一系列理想的超导晶粒,这些晶粒由电阻分流的约瑟夫森结耦合,以模拟缺陷。该模型计算表面电阻和电抗作为微波电流的函数。与YBCO薄膜带状线谐振器的实验结果进行比较,结果表明,在1-6 GHz范围内的频率和几个温度下,电阻具有良好的定量一致性。建议使用长结效应来解释高于6 GHz的测量结果与计算结果之间的偏差。我们还对沿微带传输线串联300个高Tc约瑟夫逊结的相移器件进行了建模。计算结果与测得的设备相移对微波输入功率的定量关系良好。讨论了结的串联阵列和图案化薄膜谐振器在功率依赖性方面的相似性

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