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首页> 外文期刊>Physical Review, B. Condensed Matter >Structural and electrical transport properties of superconducting Au0.7In0.3 films: A random array of superconductor-normal-metal-superconductor Josephson junctions - art. no. 054512
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Structural and electrical transport properties of superconducting Au0.7In0.3 films: A random array of superconductor-normal-metal-superconductor Josephson junctions - art. no. 054512

机译:超导Au0.7In0.3薄膜的结构和电传输特性:超导体-正常金属-超导体约瑟夫森结的随机阵列-艺术。没有。 054512

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摘要

The structural and superconducting properties of Au0.7In0.3 films, grown by interdiffusion of alternating Au and In layers, have been studied. The films were found to consist of a uniform solid solution of Au0.9In0.1, with excess In precipitated in the form of In-rich grains of various Au-In phases with distinct atomic compositions, including intermetallic compounds. As the temperature was lowered, these individual grains became superconducting at a particular local transition temperature (T-c(0)), determined primarily by the atomic composition of the grain, before a fully superconducting state of zero resistance was established. From the observed onset temperature of the superconducting transition, it was inferred that up to three different superconducting phases could have formed in these Au0.7In0.3 films, all of which were embedded in a uniform Au0.9In0.1 matrix. Among these phases, the T-c(0) of a particular one, 0.8 K, is higher than any previously reported for the Au-In system. The electrical transport properties were studied down to low temperatures. The transport results were found to be well correlated with those of the structural studies. The present work suggests that these Au0.7In0.3 films can be modeled as a random array of superconductor-normal-metal-superconductor Josephson junctions. The effect of disorder and magnetic field on the superconducting transition in these Au0.7In0.3 films is discussed. [References: 29]
机译:研究了通过交替交替的Au和In层互扩散而生长的Au0.7In0.3薄膜的结构和超导性能。发现该膜由均匀的Au0.9In0.1固溶体组成,其中过量的In以具有不同原子组成(包括金属间化合物)的各种Au-In相的富In晶粒形式沉淀。随着温度降低,在建立零电阻的完全超导状态之前,这些单个晶粒在特定的局部转变温度(T-c(0))上超导,该温度主要由晶粒的原子组成决定。从观察到的超导转变的开始温度,可以推断出在这些Au0.7In0.3薄膜中最多可以形成三个不同的超导相,所有这些相均嵌入均匀的Au0.9In0.1基体中。在这些阶段中,特定阶段的T-c(0)为0.8 K,高于先前报道的Au-In系统的T-c(0)。研究了低温下的电传输性能。发现运输结果与结构研究的相关性很好。目前的工作表明,可以将这些Au0.7In0.3薄膜建模为超导体-正常金属-超导体约瑟夫森结的随机阵列。讨论了无序和磁场对这些Au0.7In0.3薄膜中超导转变的影响。 [参考:29]

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