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首页> 外文期刊>Journal of Applied Physics >Proximity-induced superconductivity in crystalline Cu and Co nanowires and nanogranular Co structures
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Proximity-induced superconductivity in crystalline Cu and Co nanowires and nanogranular Co structures

机译:晶体Cu和Co纳米线和纳米颗粒Co结构中邻近感应的超导性

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摘要

We report an experimental study of proximity effect-induced superconductivity in crystalline Cu and Co nanowires and a nanogranular Co nanowire structure in contact with a superconducting W-based floating electrode (inducer). For electrical resistance measurements up to three pairs of Pt-based voltage leads were attached at different distances beside the inner inducer electrode, thus allowing us to probe the proximity effect over a length of 2–12 μm. Up to 30% resistance drops with respect to the normal-state value have been observed for the crystalline Co and Cu nanowires when sweeping the temperature below Tc of the inducer (5.2 K). By contrast, relative R(T) drops were found to be an order of magnitude smaller for the nanogranular Co nanowire structure. Our analysis of the resistance data shows that the superconducting proximity length in crystalline Cu and Co is about 1 μm at 2.4 K, attesting to a long-range proximity effect in the Co nanowire. Moreover, this long-range proximity effect is insusceptible to magnetic fields up to 11 T, which is indicative of spin-triplet pairing. At the same time, proximity-induced superconductivity in the nanogranular Co nanowire is strongly suppressed due to the dominating Cooper pair scattering caused by its intrinsic microstructure.
机译:我们报告了对晶体铜和钴纳米线和纳米颗粒钴纳米线结构与超导W基浮置电极(感应器)接触的邻近效应诱导的超导性的实验研究。对于电阻测量,在内部感应电极旁边的不同距离处最多可以连接三对基于Pt的电压导线,因此,我们可以探测2–12μm长度的接近效应。当扫描温度低于诱导剂的T c (5.2 K)时,对于结晶的Co和Cu纳米线,相对于常态值观察到高达30%的电阻下降。相反,对于纳米颗粒Co纳米线结构,相对R(T)下降被发现小一个数量级。我们对电阻数据的分析表明,晶体Cu和Co中的超导邻近长度在2.4 superK时约为1μm,证明了Co纳米线中的远距离邻近效应。此外,这种远距离邻近效应对高达11 T的磁场不敏感,这表明自旋三重态配对。同时,由于其固有的微观结构引起的主要库珀对散射,强烈抑制了纳米颗粒Co纳米线中的邻近感应超导性。

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