Rubio-Verdú Carmen, Garcı A-Garcı A Antonio M, Ryu Hyejin, Choi Deung-Jang, Zaldı Var Javier, Tang Shujie, Fan Bo, Shen Zhi-Xun, Mo Sung-Kwan, Pascual José Ignacio, Ugeda Miguel M
CIC nanoGUNE, 20018 Donostia-San Sebastián, Spain.
Shanghai Center for Complex Physics, Department of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China.
Nano Lett. 2020 Jul 8;20(7):5111-5118. doi: 10.1021/acs.nanolett.0c01288. Epub 2020 Jun 2.
Eigenstate multifractality is a distinctive feature of noninteracting disordered metals close to a metal-insulator transition, whose properties are expected to extend to superconductivity. While multifractality in three dimensions (3D) only develops near the critical point for specific strong-disorder strengths, multifractality in 2D systems is expected to be observable even for weak disorder. Here we provide evidence for multifractal features in the superconducting state of an intrinsic, weakly disordered single-layer NbSe by means of low-temperature scanning tunneling microscopy/spectroscopy. The superconducting gap, characterized by its width, depth, and coherence peaks' amplitude, shows a characteristic spatial modulation coincident with the periodicity of the quasiparticle interference pattern. The strong spatial inhomogeneity of the superconducting gap width, proportional to the local order parameter in the weak-disorder regime, follows a log-normal statistical distribution as well as a power-law decay of the two-point correlation function, in agreement with our theoretical model. Furthermore, the experimental singularity spectrum (α) shows anomalous scaling behavior typical from 2D weakly disordered systems.
本征态多重分形是接近金属-绝缘体转变的非相互作用无序金属的一个显著特征,其性质有望扩展到超导性。虽然三维(3D)中的多重分形仅在特定强无序强度下的临界点附近出现,但二维系统中的多重分形即使在弱无序情况下也有望被观测到。在此,我们通过低温扫描隧道显微镜/光谱学,为一种本征的、弱无序单层NbSe₂超导态中的多重分形特征提供了证据。以其宽度、深度和相干峰幅度为特征的超导能隙,呈现出与准粒子干涉图案周期性相一致的特征空间调制。超导能隙宽度的强烈空间不均匀性,在弱无序区域与局部序参量成正比,遵循对数正态统计分布以及两点关联函数的幂律衰减,这与我们的理论模型相符。此外,实验奇异谱(α)显示出二维弱无序系统典型的反常标度行为。