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Proximity coupling of superconducting nanograins with fractal distributions

机译:分形分布的超导纳米粒子的邻近耦合

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摘要

We explore the electrical and magnetic properties of a fractal assembly of Josephson junctions with transparent interfaces. For this purpose, we employ an Mg/MgO/MgB_2 nanocomposite with ~16 vol. % of MgB_2 nanograins, which are distributed in a fractal manner in the normal matrix. Irrespective of the low volume fraction of MgB_2 nanograins. the nanocomposite behaves as a bulk-like superconductor, i.e.. zero resistivity, perfect diamagnetism, and strong vortex pinning. Thus, a global Josephson phase coherence is achieved in the nanocomposite. The lower (H_(c1J)) and higher (H_(c2J)) critical fields of the Josephson network are exceptionally high (H_(c1J) = 96 Oe and H_(c2J) = 83.5 kOe) as compared to those reported previously for granular superconductors. This will give an example of robust macroscopic superconducting coherence derived from long-range proximity coupling among fractally distributed superconducting nanograins through quantum interference of Andreev quasiparticles. Transverse-field muon spin rotation measurements reveal that the mean internal field in the superconducting mixed state increases with decreasing temperature below which the Josephson phase coherence sets in, opposite to the diamagnetic response observed in magnetization measurements. This unusual behavior implies a highly disordered and fluctuating nature of the Josephson vortices in the present superconducting nanocomposite.
机译:我们探索具有透明界面的约瑟夫森结的分形集合的电学和磁学性质。为此,我们使用了约16 vol的Mg / MgO / MgB_2纳米复合材料。 MgB_2纳米颗粒的百分比,以分形方式分布在正常基质中。不管MgB_2纳米颗粒的体积分数低。纳米复合材料表现为块状超导体,即零电阻率,完美的抗磁性和强的涡旋钉扎性。因此,在纳米复合材料中实现了整体的约瑟夫森相干。约瑟夫森网络的较低(H_(c1J))和较高(H_(c2J))临界场与以前报告的颗粒场相比异常高(H_(c1J)= 96 Oe和H_(c2J)= 83.5 kOe)超导体。这将给出一个稳健的宏观超导相干性的例子,该相干性是通过安德列夫准粒子的量子干涉从分形分布的超导纳米颗粒之间的远距离邻近耦合中获得的。横向场μ子自旋旋转测量结果表明,超导混合态的平均内部场随着温度的降低而增加,在此温度以下,约瑟夫森相干性达到设定值,这与磁化测量中观察到的反磁响应相反。这种不寻常的行为暗示了本超导纳米复合材料中约瑟夫森涡的高度无序和波动的性质。

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  • 来源
    《Physical review》 |2020年第3期|035146.1-035146.12|共12页
  • 作者单位

    Department of Chemistry Graduate School of Science Kobe University Nada Kobe 657-8501 Japan;

    Department of Planetology Graduate School of Science Kobe University Nada Kobe 657-8501 Japan;

    International Center for Materials Nanoarchitectonics National Institute for Materials Science Namiki 1-1 Tsukuba 305-0044 Japan;

    Optoeleclonic Materials Group Optical and Electronic Materials Unit National Institute for Materials Science Namiki 1-1 Tsukuba 305-0044 Japan;

    Nippon Sheet Glass Co. LTD. Konoike Itami 664-8520 Japan;

    Neutron Science and Technology Center Comprehensive Research Organization for Science and Society (CROSS) Tokai 319-1106 Japan;

    Institute of Materials Structure Science High Energy Accelerator Research Organization Tsukuba Ibaraki 305-0801 Japan;

    Center for Support to Research and Education Activities Kobe University Nada Kobe 657-8501 Japan;

    Molecular Photoscience Research Center Kobe University Nada Kobe 657-8501 Japan;

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