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Coherent Forward Scattering As a Robust Probe of Multifractality in Critical Disordered Media

SCIPOST PHYSICS(2023)SCI 2区

Univ Toulouse

Cited 4|Views10
Abstract
We study coherent forward scattering (CFS) in critical disordered systems, whose eigenstates are multifractals. We give general and simple arguments that make it possible to fully characterize the dynamics of the shape and height of the CFS peak. We show that the dynamics is governed by multifractal dimensions D_1 and D_2, which suggests that CFS could be used as an experimental probe for quantum multifractality. Our predictions are universal and numerically verified in three paradigmatic models of quantum multifractality: Power-law Random Banded Matrices (PRBM), the Ruijsenaars-Schneider ensembles (RS), and the three-dimensional kicked-rotor (3DKR). In the strong multifractal regime, we show analytically that these universal predictions exactly coincide with results from standard perturbation theory applied to the PRBM and RS models.
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Scattering Media
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要点】:本文研究了在临界无序系统中,相干前向散射(CFS)作为一种探测量子多分形性的稳健探针,并通过多分形维度D_1和D_2揭示了其动力学特性。

方法】:作者提出了通用且简单的理论论证,能够完全描述CFS峰的形状和高度的动态变化。

实验】:通过数值验证了在三个量子多分形性的典型模型(幂律随机带状矩阵模型(PRBM)、Ruijsenaars-Schneider集合(RS)和三维踢转子模型(3DKR))中的预测,发现在强多分形性区域,这些普适预测与PRBM和RS模型的标凈微扰理论结果完全一致。