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High-temperature superconducting Josephson Vortex Flow Transistors:numerical simulations and experimental results

机译:高温超导约瑟夫森涡流晶体管:数值模拟和实验结果

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Josephson Vortex Flow Transistors (JVFTs) based on high transition temperature superconductors (HTS) are promising candidates for three-terminal devices, which may be used e.g. at the interface between superconducting and semiconducting electronics. We have investigated the performance of JVFTs based on parallel arrays and on long HTS Josephson junctions, both theoretically and experimentally. Our numerical simulation results reveal the dependence of the current gain on various device parameters, such as number of junctions, loop size, and screening parameter β=L/Lj, where L is the loop inductance and L j the Josephson inductance of a single junction. We have fabricated various devices using symmetrically and asymmetrically injected bias currents. The experimental results are in good agreement with our simulation results and it is shown that for asymmetric devices high values of the current gain above 20 can be obtained for temperatures below 60 K
机译:基于高转变温度超导体(HTS)的约瑟夫森涡流晶体管(JVFT)是三端器件的有前途的候选者,可用于例如在超导和半导电子之间的接口处。我们在理论上和实验上都研究了基于并行阵列和长HTS Josephson结的JVFT的性能。我们的数值模拟结果揭示了电流增益对各种器件参数的依赖性,例如结数,环路尺寸和屏蔽参数β= L / Lj,其中L是环路电感,L j是单个结的约瑟夫森电感。我们已经使用对称和非对称注入的偏置电流制造了各种器件。实验结果与我们的仿真结果非常吻合,结果表明,对于不对称器件,在温度低于60 K时可以获得高于20的电流增益值

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