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Emergence of nanoscale inhomogeneity in the superconducting state of a homogeneously disordered conventional superconductor

机译:在均匀无序的常规超导体的超导状态下出现纳米级不均匀性

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摘要

The notion of spontaneous formation of an inhomogeneous superconducting state is at the heart of most theories attempting to understand the superconducting state in the presence of strong disorder. Using scanning tunneling spectroscopy and high resolution scanning transmission electron microscopy, we experimentally demonstrate that under the competing effects of strong homogeneous disorder and superconducting correlations, the superconducting state of a conventional superconductor, NbN, spontaneously segregates into domains. Tracking these domains as a function of temperature we observe that the superconducting domains persist across the bulk superconducting transition, Tc, and disappear close to the pseudogap temperature, T*, where signatures of superconducting correlations disappear from the tunneling spectrum and the superfluid response of the system.
机译:自发形成不均匀的超导状态的概念是大多数理论的核心,这些理论试图理解在存在强紊乱的情况下的超导状态。使用扫描隧道光谱法和高分辨率扫描透射电子显微镜,我们实验证明了在强大的均匀无序和超导相关性的竞争作用下,常规超导体NbN的超导状态自发地分离为域。跟踪这些域随温度的变化,我们观察到超导域在整个超导跃迁Tc上持续存在,并在伪能隙温度T *附近消失,超导相关的特征从隧道光谱和超流体响应中消失。系统。

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