约瑟夫森效应
凝聚态物理
准粒子
超导电性
邻近效应(电子束光刻)
耗散系统
物理
涡流
皮约瑟夫森结
鱿鱼
磁场
材料科学
纳米技术
量子力学
机械
电子束光刻
图层(电子)
抵抗
生态学
生物
作者
V. S. Stolyarov,V. I. Ruzhickiy,Razmik A. Hovhannisyan,Sergey Grebenchuk,Andrey G. Shishkin,I. A. Golovchanskiy,J. Cayssol,N. V. Klenov,I. I. Soloviev,M. Yu. Kupriyanov,Dimitri Roditchev
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-07-12
卷期号:22 (14): 5715-5722
标识
DOI:10.1021/acs.nanolett.2c00647
摘要
Made of a thin non-superconducting metal (N) sandwiched by two superconductors (S), SNS Josephson junctions enable novel quantum functionalities by mixing up the intrinsic electronic properties of N with the superconducting correlations induced from S by proximity. Electronic properties of these devices are governed by Andreev quasiparticles [1] which are absent in conventional SIS junctions whose insulating barrier (I) between the two S electrodes owns no electronic states. Here we focus on the Josephson vortex (JV) motion inside Nb-Cu-Nb proximity junctions subject to electric currents and magnetic fields. The results of local (Magnetic Force Microscopy) and global (transport) experiments provided simultaneously are compared with our numerical model, revealing the existence of several distinct dynamic regimes of the JV motion. One of them, identified as a fast hysteretic entry/escape below the critical value of Josephson current, is analyzed and suggested for low-dissipative logic and memory elements.
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