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Time-reversal symmetry-breaking superconductivity in epitaxial bismuthickel bilayers

机译:外延铋/镍双分子层中的时间反转对称性打破超导

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摘要

Superconductivity that spontaneously breaks time-reversal symmetry (TRS) has been found, so far, only in a handful of three-dimensional (3D) crystals with bulk inversion symmetry. We report an observation of spontaneous TRS breaking in a 2D superconducting system without inversion symmetry: the epitaxial bilayer films of bismuth and nickel. The evidence comes from the onset of the polar Kerr effect at the superconducting transition in the absence of an external magnetic field, detected by the ultrasensitive loop-less fiber-optic Sagnac interferometer. Because of strong spin-orbit interaction and lack of inversion symmetry in a Bi/Ni bilayer, superconducting pairing cannot be classified as singlet or triplet. We propose a theoretical model where magnetic fluctuations in Ni induce the superconducting pairing of the dxy ± idx2−y2 orbital symmetry between the electrons in Bi. In this model, the order parameter spontaneously breaks the TRS and has a nonzero phase winding number around the Fermi surface, thus making it a rare example of a 2D topological superconductor.
机译:迄今为止,仅在极少数具有体相反转对称性的三维(3D)晶体中发现了自发打破时间反转对称性(TRS)的超导性。我们报告了在没有反对称性的二维超导系统中自发TRS断裂的观察:铋和镍的外延双层膜。证据来自超灵敏的无环光纤Sagnac干涉仪检测到的,在不存在外部磁场的情况下超导跃迁上的极性Kerr效应的开始。由于Bi / Ni双层中强烈的自旋轨道相互作用和缺乏反转对称性,因此超导对不能归为单重态或三重态。我们提出了一个理论模型,其中Ni中的磁涨落引起Bi中电子之间的dxy±idx 2 -y 2 轨道对称超导配对。在此模型中,阶数参数自发地破坏了TRS,并且在费米表面周围的相绕组数非零,因此使其成为2D拓扑超导体的罕见示例。

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