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钉扎诱导介观超导盘中涡旋簇和巨型涡旋的形成。

Pinning-induced formation of vortex clusters and giant vortices in mesoscopic superconducting disks.

作者信息

Grigorieva I V, Escoffier W, Misko V R, Baelus B J, Peeters F M, Vinnikov L Y, Dubonos S V

机构信息

School of Physics and Astronomy, University of Manchester, Manchester, UK.

出版信息

Phys Rev Lett. 2007 Oct 5;99(14):147003. doi: 10.1103/PhysRevLett.99.147003. Epub 2007 Oct 3.

Abstract

Merged, or giant, multiquanta vortices (GVs) are known to appear in very small superconductors near the superconducting transition due to strong confinement of magnetic flux. Here we present evidence for a new, pinning-related, mechanism for vortex merger. Using Bitter decoration to visualize vortices in small Nb disks with varying degrees of disorder, we show that confinement in combination with strong disorder causes individual vortices to merge into clusters or even GVs well below Tc and Hc2, in contrast to well-defined shells of individual vortices found in the absence of pinning.

摘要

已知合并的或巨大的多量子涡旋(GVs)会由于磁通量的强限制而在接近超导转变的非常小的超导体中出现。在这里,我们展示了一种与钉扎相关的新的涡旋合并机制的证据。通过使用比特尔装饰来可视化不同无序程度的小铌盘中的涡旋,我们表明,与在没有钉扎时发现的单个涡旋的清晰壳层相反,限制与强无序相结合会导致单个涡旋在远低于临界温度Tc和上临界场Hc2时合并成簇甚至形成GVs。

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