论文标题

田间冷却的环形约瑟夫森隧道连接

Field Cooled Annular Josephson Tunnel Junctions

论文作者

Monaco, Roberto, Mygind, Jesper, Koshelets, Valery P.

论文摘要

我们研究了平面环形约瑟夫森隧道连接的物理,在存在外部磁场的情况下通过其过渡温度淬灭的物理。用长NB/AL-ALOX/NB环形连接进行的实验表明,捕获在形成连接的高质量双连接的超导电极中的磁通量会产生持久电流,其相关磁场会影响连接的静态和动力学特性。更具体地说,被困在一个电极孔中的场结合了D.C。偏置电流引起约瑟夫森涡流的密集列车的粘性流,这些流通过位移线性斜率,fiske阶梯楼梯和ECK台阶的顺序外观表现出来。此外,在磁衍射模式的第一个叶中观察到场移。持续电流的效果可以被垂直于接线平面的外部磁场减轻甚至取消。与持续电流相关的径向场可以用经典的现象学正弦 - 戈登模型来精确建模,用于扩展的一维约瑟夫森连接。进行了广泛的数值模拟,以披露负责磁诱导步骤出现并阐明几何参数的作用的基本通量流动机制。发现在共聚焦环形连接处增强了场冷却的烙印,这是研究良好的圆形环形连接的自然概括。

We investigate the physics of planar annular Josephson tunnel junctions quenched through their transition temperature in the presence of an external magnetic field. Experiments carried out with long Nb/Al-AlOx/Nb annular junctions showed that the magnetic flux trapped in the high-quality doubly-connected superconducting electrodes forming the junction generates a persistent current whose associated magnetic field affects the both the static and dynamics properties of the junctions. More specifically, the field trapped in the hole of one electrode combined with a d.c. bias current induces a viscous flow of dense trains of Josephson vortices which manifests itself through the sequential appearance of displaced linear slopes, Fiske step staircases and Eck steps in the junction's current-voltage characteristic. Furthermore, a field shift is observed in the first lobe of the magnetic diffraction pattern. The effects of the persistent current can be mitigated or even canceled by an external magnetic field perpendicular to the junction plane. The radial field associated with the persistent current can be accurately modeled with the classical phenomenological sine-Gordon model for extended one-dimensional Josephson junctions. Extensive numerical simulations were carried out to disclose the basic flux-flow mechanism responsible for the appearance of the magnetically induced steps and to elucidate the role of geometrical parameters. It was found that the imprint of the field cooling is enhanced in confocal annular junctions which are the natural generalization of the well studied circular annular junctions.

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