约瑟夫森效应
鱿鱼
电感
凝聚态物理
超电流
皮约瑟夫森结
超导电性
超导隧道结
铌
材料科学
磁场
动电感
氧化钇钡铜
光电子学
物理
高温超导
电压
生物
量子力学
冶金
生态学
作者
Roman Kuzmin,Nitish Mehta,Nicholas Grabon,Vladimir Manucharyan
摘要
It is customary to use arrays of superconducting quantum interference devices (SQUIDs) for implementing magnetic field-tunable inductors. Here, we demonstrate an equivalent tunability in a (SQUID-free) array of single Al/AlOx/Al Josephson tunnel junctions. With the proper choice of junction geometry, a perpendicularly applied magnetic field bends along the plane of the superconductor and focuses into the tunnel barrier region due to a demagnetization effect. Consequently, the Josephson inductance can be efficiently modulated by the Fraunhofer-type supercurrent interference. The elimination of SQUIDs not only simplifies the device design and fabrication but also facilitates a denser packing of junctions, and, hence, a higher inductance per unit length. As an example, we demonstrate a transmission line, the characteristic impedance of which is field-tuned in the range of 4–8 kΩ, centered around the important value of the resistance quantum h/(2e)2≈6.5 kΩ.
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