论文标题

可视化无序的二维电子气体的多型波形

Visualizing the multifractal wavefunctions of a disordered two-dimensional electron gas

论文作者

Jäck, Berthold, Zinser, Fabian, onig, Elio J. K\", Wissing, Sune N. P., Schmidt, Anke B., Donath, Markus, Kern, Klaus, Ast, Christian R.

论文摘要

量子 - 关键的安德森过渡时无序的二维电子气体的波形被预测在其真实空间幅度中表现出多型尺度。我们通过将高分辨率扫描隧道显微镜与自旋和角度分辨的逆向反效应实验相结合,实验研究了这些特征在空间分辨的局部密度中的出现。我们详细了解表面合金电子带结构,确切的晶格结构和原子解析的状态局部密度,使我们能够构建混合表面合金的逼真的安德森紧密结合模型,并直接比较了测得的状态特征的位置密度与我们的模型计算的态度。对状态图的这些二维局部密度的统计分析揭示了其对数正态分布和具有有限异常缩放指数的基础波置函数的多重尺度缩放特性。最后,我们的实验结果证实了Wigner-Dyson类中Anderson量子相变的精确缩放对称性的理论预测。

The wavefunctions of a disordered two-dimensional electron gas at the quantum-critical Anderson transition are predicted to exhibit multifractal scaling in their real space amplitude. We experimentally investigate the appearance of these characteristics in the spatially resolved local density of states of a two-dimensional mixed surface alloy Bi_xPb_{1-x}/Ag(111), by combining high-resolution scanning tunneling microscopy with spin and angle-resolved inverse-photoemission experiments. Our detailed knowledge of the surface alloy electronic band structure, the exact lattice structure and the atomically resolved local density of states enables us to construct a realistic Anderson tight binding model of the mixed surface alloy, and to directly compare the measured local density of states characteristics with those from our model calculations. The statistical analyses of these two-dimensional local density of states maps reveal their log-normal distributions and multifractal scaling characteristics of the underlying wavefunctions with a finite anomalous scaling exponent. Finally, our experimental results confirm theoretical predictions of an exact scaling symmetry for Anderson quantum phase transitions in the Wigner-Dyson classes.

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