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铁基超导体中的强非均匀超流。

A strongly inhomogeneous superfluid in an iron-based superconductor.

机构信息

Leiden Institute of Physics, Leiden University, Leiden, The Netherlands.

Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory, Upton, NY, USA.

出版信息

Nature. 2019 Jul;571(7766):541-545. doi: 10.1038/s41586-019-1408-8. Epub 2019 Jul 24.

Abstract

Although the possibility of spatial variations in the superfluid of unconventional, strongly correlated superconductors has been suggested, it is not known whether such inhomogeneities-if they exist-are driven by disorder, strong scattering or other factors. Here we use atomic-resolution Josephson scanning tunnelling microscopy to reveal a strongly inhomogeneous superfluid in the iron-based superconductor FeTeSe. By simultaneously measuring the topographic and electronic properties of the superconductor, we find that this inhomogeneity in the superfluid is not caused by structural disorder or strong inter-pocket scattering and is not correlated with variations in the energy required to break electron pairs. Instead, we see a clear spatial correlation between the superfluid density and the quasiparticle strength (the height of the coherence peak) on a local scale. This result places iron-based superconductors on equal footing with copper oxide superconductors, where a similar relation has been observed on the macroscopic scale. Our results establish the existence of strongly inhomogeneous superfluids in unconventional superconductors, excluding chemical disorder and inter-band scattering as the causes of the inhomogeneity, and shed light on the relation between quasiparticle character and superfluid density. When repeated at different temperatures, our technique could further help to elucidate what local and global mechanisms limit the critical temperature in unconventional superconductors.

摘要

尽管非常规强关联超导体中超流的空间变化的可能性已经被提出,但目前尚不清楚这些不均匀性(如果存在的话)是由无序、强散射还是其他因素驱动的。在这里,我们使用原子分辨率约瑟夫森扫描隧道显微镜来揭示铁基超导体 FeTeSe 中存在强烈不均匀的超流。通过同时测量超导体的形貌和电子特性,我们发现超流中的这种不均匀性不是由结构无序或强口袋间散射引起的,也与打破电子对所需的能量变化无关。相反,我们在局部尺度上看到超流密度和准粒子强度(相干峰的高度)之间存在明显的空间相关性。这一结果使得铁基超导体与铜氧化物超导体处于同等地位,在宏观尺度上已经观察到了类似的关系。我们的结果确立了非常规超导体中超流的强烈不均匀性的存在,排除了化学无序和能带间散射作为不均匀性的原因,并揭示了准粒子特性和超流密度之间的关系。当在不同温度下重复进行时,我们的技术可能会进一步帮助阐明限制非常规超导体临界温度的局部和全局机制。

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