Suppr超能文献

由于电流激励的移动涡旋,介观超导体中的大磁电阻振荡。

Large magnetoresistance oscillations in mesoscopic superconductors due to current-excited moving vortices.

机构信息

Departement Fysica, Universiteit Antwerpen, Belgium.

出版信息

Phys Rev Lett. 2012 Aug 3;109(5):057004. doi: 10.1103/PhysRevLett.109.057004. Epub 2012 Jul 31.

Abstract

We show in the case of a superconducting Nb ladder that a mesoscopic superconductor typically exhibits magnetoresistance oscillations whose amplitude and temperature dependence are different from those stemming from the Little-Parks effect. We demonstrate that these large resistance oscillations (as well as the monotonic background on which they are superimposed) are due to current-excited moving vortices, where the applied current in competition with the oscillating Meissner currents imposes or removes the barriers for vortex motion in an increasing magnetic field. Because of the ever present current in transport measurements, this effect should be considered in parallel with the Little-Parks effect in low-critical temperature (T(c)) samples, as well as with recently proposed thermal activation of dissipative vortex-antivortex pairs in high-T(c) samples.

摘要

我们通过超导 Nb 阶梯的实例表明,介观超导体通常表现出磁阻振荡,其幅度和温度依赖性与源于 Little-Parks 效应的振荡不同。我们证明,这些大电阻振荡(以及它们叠加的单调背景)是由于电流激发的移动涡旋引起的,其中外加电流与振荡的迈斯纳电流竞争,在增加的磁场中施加或消除了涡旋运动的障碍。由于在传输测量中存在着持续的电流,因此在低温(T(c))样品中,除了最近提出的高温(T(c))样品中耗散涡旋-反涡旋对的热激活之外,这种效应也应该与 Little-Parks 效应一起被考虑。

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