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Mesoscopic lateral S/N/S weak links: Josephson effects and Josephson-like vortex flow

机译:介观横向S / N / S弱链接:Josephson效应和Josephson样涡流

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摘要

We report an experimental and numerical study of magneto-transport properties of mesoscopic lateral S/N/S superconducting weak links where the N region is made of the same material as the S banks, though with strongly reduced critical temperature. Magnetoresistance oscillations and clear dc and ac Josephson effects are observed. Experimental results are analyzed in the framework of the time-dependent Ginzburg-Landau model for mesoscopic type II superconductors with an inhomogeneous critical temperature. The analysis suggests that dissipative branches of the current-voltage curve of the weak link in the presence of a magnetic field are accounted for by moving 'Josephson-like' vortices. These relatively fast excitations are anisotropic as per the ordinary Josephson vortex in tunnel junctions, but have a normal core like the ordinary Abrikosov vortex in plain superconducting strips. Moreover, unlike the vortex in tunneling junctions, in the lateral S/N/S weak link, the extension of the moving vortex is larger than the extension of the static one. Further, we report in some detail on the lateral proximity effect, and the deviations from the ideality of the current-phase relation of this kind of lateral weak link in the Josephson regime.
机译:我们报告了介透视S / N / S超导弱链路的磁传输性能的实验性和数值研究,其中N区与S库相同的材料制成,但临界温度强烈降低。磁阻振荡和明确的DC和AC Josephson效果被观察到。在具有不均匀临界温度的介性II型超导体的时间依赖吉因堡 - Landau模型的框架中分析了实验结果。该分析表明,通过移动“Josephse-Miking”涡流,占磁场存在下弱链路的电流电压曲线的耗散分支。这些相对快速的激动是各向异性的,根据隧道交叉点的普通Josephson漩涡,但是具有正常的核心,如普通的超导条带。此外,与隧穿接合中的涡流不同,在横向S / N / S弱链路中,移动涡流的延伸大于静态1的延伸。此外,我们在横向邻近效应上有一些细节报告,以及Josephson制度中这种横向弱链路的当前相位关系的偏差。

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