Level statistics and Anderson delocalization in two-dimensional granular materials

L. Zhang, Yinqiao Wang, Jie Zheng, Aile Sun, Xulai Sun, Yujie Wang, W. Schirmacher, Jie Zhang
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引用次数: 1

Abstract

Contrary to the theoretical predictions that all waves in two-dimensional disordered materials are localized, Anderson localization is observed only for sufficiently high frequencies in an isotropically jammed two-dimensional disordered granular packing of photoelastic disks. More specifically, we have performed an experiment in analyzing the level statistics of normal mode vibrations. We observe delocalized modes in the low-frequency boson-peak regime and localized modes in the high frequency regime with the crossover frequency just below the Debye frequency. We find that the level-distance distribution obeys Gaussian-Orthogonal-Ensemble (GOE) statistics, i.e. Wigner-Dyson distribution, in the boson-peak regime, whereas those in the high-frequency regime Poisson statistics is observed. The scenario is found to coincide with that of harmonic vibrational excitations in three-dimensional disordered solids.
二维颗粒材料中的水平统计和安德森离域
与理论预测相反,二维无序材料中的所有波都是局域化的,安德森局域化仅在各向同性堵塞的二维无序颗粒状光弹性圆盘中观察到足够高的频率。更具体地说,我们进行了一个实验来分析正态振动的水平统计。我们观察到低频玻色子峰区的离域模式和高频区的定域模式,其交叉频率刚好低于德拜频率。我们发现能级距离分布在玻色子峰区服从高斯-正交-系综(GOE)统计,即Wigner-Dyson分布,而在高频区则服从泊松统计。发现这种情况与三维无序固体中的谐波振动激励一致。
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