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Interactions between electrons, mesoscopic Josephson effect and asymmetric current fluctuations

机译:电子之间的相互作用,介观约瑟夫森效应和不对称电流波动

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This article discusses three experiments on the properties of electronic transport at the mesoscopic scale. The first one allowed to measure the energy exchange rate between electrons in a metal contaminated by a very weak concentration of magnetic impurities. The role played by magnetic impurities in the Kondo regime on those energy exchanges is quantitatively investigated, and the global measured exchange rate is larger than expected. The second experiment is a measurement of the current-phase relation in a system made of two superconductors linked through a single atom. We thus provide quantitative support for the recent description of the mesoscopic Josephson effect. The last experiment is a measurement of the asymmetry of the current fluctuations in a mesoscopic conductor, using a Josephson junction as a threshold detector.
机译:本文讨论了介观尺度上电子传输性质的三个实验。第一个允许测量被非常弱的磁性杂质浓度污染的金属中电子之间的能量交换率。定量研究了近藤政权中磁性杂质在那些能量交换中所起的作用,全球测得的汇率大于预期。第二个实验是在由两个通过单个原子链接的超导体组成的系统中测量电流-相位关系。因此,我们为介观约瑟夫森效应的最新描述提供了定量支持。最后一个实验是使用Josephson结作为阈值检测器来测量介观导体中电流波动的不对称性。

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