Ko Wonhee, Song Sang Yong, Yan Jiaqiang, Lado Jose L, Maksymovych Petro
Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.
Department of Physics and Astronomy, University of Tennessee, Knoxville, Tennessee 37996, United States.
Nano Lett. 2023 Sep 13;23(17):8310-8318. doi: 10.1021/acs.nanolett.3c02658. Epub 2023 Aug 28.
Recent emergence of low-dimensional unconventional superconductors and their exotic interface properties calls for new approaches to probe the pairing symmetry, a fundamental and frequently elusive property of the superconducting condensate. Here, we introduce the unique capability of tunneling Andreev reflection (TAR) to probe unconventional pairing symmetry, utilizing the sensitivity of this technique to specific Andreev reflections. Specifically, suppression of the lowest-order Andreev reflection due to quantum interference but emergence of the higher-order Andreev processes provides direct evidence of the sign-changing order parameter in the paradigmatic FeSe superconductor. TAR spectroscopy also reveals two superconducting gaps, points to a possibility of a nodal gap structure, and directly confirms that superconductivity is locally suppressed along the nematic twin boundary, with preferential and near-complete suppression of the larger energy gap. Our findings therefore enable new, atomic-scale insight into microscopic, inhomogeneous, and interfacial properties of emerging quantum materials.
近年来,低维非常规超导体及其奇异的界面特性不断涌现,这就需要新的方法来探测配对对称性,这是超导凝聚体的一个基本且常常难以捉摸的特性。在此,我们介绍了隧穿安德烈夫反射(TAR)探测非常规配对对称性的独特能力,利用了该技术对特定安德烈夫反射的敏感性。具体而言,由于量子干涉导致的最低阶安德烈夫反射受到抑制,但高阶安德烈夫过程出现,这为典型的FeSe超导体中符号变化的序参量提供了直接证据。TAR光谱还揭示了两个超导能隙,指出了节点能隙结构的可能性,并直接证实了沿着向列双晶界超导性在局部受到抑制,其中较大的能隙优先且几乎完全被抑制。因此,我们的研究结果为新兴量子材料的微观、非均匀和界面特性提供了新的原子尺度的见解。