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首页> 外文期刊>ACS nano >Superconductivity on Edge: Evidence of a One-Dimensional Superconducting Channel at the Edges of Single-Layer FeTeSe Antiferromagnetic Nanoribbons
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Superconductivity on Edge: Evidence of a One-Dimensional Superconducting Channel at the Edges of Single-Layer FeTeSe Antiferromagnetic Nanoribbons

机译:边缘上的超导性:单层胎磁纳米杆边缘处的一维超导通道的证据

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摘要

How superconductivity emerges from antiferromagnetic ordering is an essential question for Fe-based superconductors. Here, we explore the effect of dimensionality on the interplay between antiferromagnetic ordering and superconductivity by investigating nanoribbons of single-layer FeTe1-xSex films grown on SrTiO3(001) substrates by molecular beam epitaxy. Using scanning tunneling microscopy/spectroscopy, we find a one-dimensional (1D) superconducting channel 2 nm wide with a T-c of 42 +/- 4 K on the edge of FeTe1-xSex (x < 0.1) ribbons, coexisting with a non-superconducting ribbon interior that remains bicollinear antiferromagnetically ordered. Density functional theory calculations indicate that both Se and the presence of the edge destabilize the bicollinear antiferromagnetic magnetic order, resulting in a paramagnetic region near the edge with strong local checkerboard fluctuations that is conducive to superconductivity. Our results represent the highest T-c achieved in 1D superconductors and demonstrate an effective route toward stabilizing superconductivity in Fe-based superconductors at reduced dimensions.
机译:防铁磁性排序的超导是如何出现的是Fe基超导体的必要问题。在这里,我们通过分子束外延研究在SRTIO3(001)衬底上生长的单层Fete1-XSex膜的纳米纤维来探讨对反铁磁性排序和超导电性的相互作用的影响。使用扫描隧道显微镜/光谱学,我们发现一维(1D)超导通道2nm宽,在Fete1-xsex(x <0.1)带的边缘上的Tc为42 +/- 4 k,与非仍然是双脉冲反散排序的超导带内部。密度函数理论计算表明,SE和边缘的存在使得双脉冲性反散磁序稳定,导致边缘附近的顺磁区域,具有强大的本地棋盘波动,该波动有利于超导。我们的结果表示在1D超导体中实现的最高T-C,并在减小的尺寸下证明了在Fe基超导体中稳定超导性的有效途径。

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