论文标题

轨道上的超导体轨道

Orbital Fulde-Ferrell-Larkin-Ovchinnikov state in an Ising superconductor

论文作者

Wan, Puhua, Zheliuk, Oleksandr, Yuan, Noah F. Q., Peng, Xiaoli, Zhang, Le, Liang, Minpeng, Zeitler, Uli, Wiedmann, Steffen, Hussey, Nigel, Palstra, Thomas T. M., Ye, Jianting

论文摘要

常规的Fulde-Ferrell-Larkin-Ovchinnikov(FFLO)状态依赖于外部磁场的Zeeman效应来打破时间反转对称性,形成了有限的Momentum Cooper配对。在反转对称性断裂的超导体中,RashBA或ISING型自旋轨耦合(SOC)可以与Zeeman或磁场的轨道效应相互作用,从而扩大了可能的FFLO态范围,尽管这些更外来的FFLO配对形式的证据已经缺乏。在这里,我们报告了通过耦合ISING SOC和多层2H-NBSE2中的轨道效应引起的非常规FFLO状态的发现。运输测量表明,转化和旋转对称性在轨道FFLO状态下被损坏,提供了有限动量库珀配对的标志性标志。我们建立了整个轨道FFLO相图,包括正常金属,均匀的Ising超导相和六倍的轨道FFLO状态。这项研究强调了有限摩托明超导性的另一种途径,并提供了一种通用机制,可以使轨道FFLO状态在类似材料中具有破碎的反转对称性。

The conventional Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state relies on the Zeeman effect of an external magnetic field to break time-reversal symmetry, forming a state of finite-momentum Cooper pairing. In superconductors with broken inversion symmetries, the Rashba or Ising-type spin-orbit coupling (SOC) can interact with either the Zeeman or the orbital effect of magnetic fields, extending the range of possible FFLO states, though evidence for these more exotic forms of FFLO pairing has been lacking. Here we report the discovery of an unconventional FFLO state induced by coupling the Ising SOC and the orbital effect in multilayer 2H-NbSe2. Transport measurements show that the translational and rotational symmetries are broken in the orbital FFLO state, providing the hallmark signatures of finite momentum cooper pairings. We establish the entire orbital FFLO phase diagram, consisting of normal metal, uniform Ising superconducting phase, and a six-fold orbital FFLO state. This study highlights an alternative route to finite-momentum superconductivity and provides a universal mechanism to prepare orbital FFLO states in similar materials with broken inversion symmetries.

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