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Quantum interference and confinement phenomena in mesoscopic superconducting systems

机译:介观超导系统中的量子干涉和约束现象

摘要

The superconducting field (H)-temperature (T) phase boundary has been measured in mesoscopic Al samples of different topology: lines, open and filld squares, which were made under the same conditions from the same material. These samples clearly show different superconducting H-T phase boundaries which are nicely reproducing the predictions of the theoretical calculations made for their particular confinement geometries. The confinement of the flux lines by the lattice of the submicrometer holes has been studied in the Pb/Ge multilayers. A substantial enhancement of the critical current j(c), has been achieved. Sharp integer and rational matching peaks in the j(c)(H) curve are observed. The possibility of the ''quantum design'' of the superconducting critical parameters (H-c(T) and j(c)(T, H)) of the mesoscopic and nanostructured superconductors by optimizing the confinement geometry for the superconducting condensate and for the flux lines has been demonstrated.
机译:已在不同拓扑的介观Al样品中测量了超导场(H)-温度(T)相界:线,空心和实心正方形,它们是在相同条件下由相同材料制成的。这些样品清楚地显示出不同的超导H-T相界,很好地再现了针对其特定约束几何形状进行的理论计算的预测。在Pb / Ge多层膜中研究了亚微米孔的晶格对通量线的限制。已经实现了临界电流j(c)的大幅提高。在j(c)(H)曲线中观察到尖锐的整数和有理匹配峰。通过优化超导冷凝物和通量的约束几何形状,可以对介观和纳米结构超导体的超导临界参数(Hc(T)和j(c)(T,H))进行“量子设计”线已被证明。

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