涡流
超导电性
凝聚态物理
磁通量
磁通量量子
物理
磁通钉扎
超电流
磁场
量化(信号处理)
Ⅱ型超导体
穿透深度
焊剂(冶金)
量子力学
约瑟夫森效应
高温超导
材料科学
机械
冶金
计算机视觉
计算机科学
作者
An-Lei Zhang,V. N. Gladilin,Joris Van de Vondel,V. V. Moshchalkov,Jun‐Yi Ge
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-08-18
卷期号:22 (17): 7151-7157
被引量:4
标识
DOI:10.1021/acs.nanolett.2c02356
摘要
Flux quantization has been widely regarded as the hallmark of the macroscopic quantum state of superconductivity. However, practical design of superconductor devices exploiting finite size confinement effects may induce exotic phenomena, including nonquantized vortices. In our research, the magnetic flux of vortices has been studied in a series of superconducting strips as a function of the strip width and the penetration depth. In both circumstances, the observation using scanning Hall probe microscope (SHPM) displays a controlled evolution from singly quantized vortices to nonquantized ones. It is also found that the magnetic flux is immune to the flowing supercurrent. The simulations based on Ginzburg-Landau theory agree well with experimental results. The observed behavior of the vortex flux may open new perspectives for fundamental research and applications based on vortex matter, such as vortex-memory devices and magnetic field traps for ultracold atoms.
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