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纳米图案高温超导薄膜中磁电阻的大幅振荡。

Large oscillations of the magnetoresistance in nanopatterned high-temperature superconducting films.

机构信息

Department of Physics, Institute of Superconductivity, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

Nat Nanotechnol. 2010 Jul;5(7):516-9. doi: 10.1038/nnano.2010.111. Epub 2010 Jun 13.

Abstract

Measurements on nanoscale structures constructed from high-temperature superconductors are expected to shed light on the origin of superconductivity in these materials. To date, loops made from these compounds have had sizes of the order of hundreds of nanometres(8-11). Here, we report the results of measurements on loops of La(1.84)Sr(0.16)CuO(4), a high-temperature superconductor that loses its resistance to electric currents when cooled below approximately 38 K, with dimensions down to tens of nanometres. We observe oscillations in the resistance of the loops as a function of the magnetic flux through the loops. The oscillations have a period of h/2e, and their amplitude is much larger than the amplitude of the resistance oscillations expected from the Little-Parks effect. Moreover, unlike Little-Parks oscillations, which are caused by periodic changes in the superconducting transition temperature, the oscillations we observe are caused by periodic changes in the interaction between thermally excited moving vortices and the oscillating persistent current induced in the loops. However, despite the enhanced amplitude of these oscillations, we have not detected oscillations with a period of h/e, as recently predicted for nanoscale loops of superconductors with d-wave symmetry, or with a period of h/4e, as predicted for superconductors that exhibit stripes.

摘要

对高温超导体制成的纳米结构的测量有望揭示这些材料中超导性的起源。迄今为止,这些化合物制成的环的尺寸约为数百纳米(8-11)。在这里,我们报告了对 La(1.84)Sr(0.16)CuO(4) 环的测量结果,La(1.84)Sr(0.16)CuO(4)是一种高温超导体,当冷却到约 38 K 以下时,其电阻会消失。这些环的尺寸达到数十纳米。我们观察到环的电阻随通过环的磁通量的变化而产生的振荡。这些振荡的周期为 h/2e,其幅度远大于由 Little-Parks 效应引起的电阻振荡的幅度。此外,与由超导转变温度周期性变化引起的 Little-Parks 振荡不同,我们观察到的振荡是由热激发移动涡旋与在环中感应的振荡持续电流之间的相互作用周期性变化引起的。然而,尽管这些振荡的幅度增强了,但我们尚未检测到具有 h/e 周期的振荡,如最近对具有 d 波对称性的纳米超导环的预测,也没有检测到具有 h/4e 周期的振荡,如预测的那样条纹状超导性。

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