统计物理学
随机矩阵
混乱的
物理
波函数
概率密度函数
计算机科学
数学
量子力学
人工智能
统计
特征向量
作者
Shen Lin,Sangrui Luo,Shukai Ma,Junda Feng,Yang Shao,Zachary B. Drikas,Bisrat D. Addissie,Steven M. Anlage,Thomas M. Antonsen,Zhen Peng
标识
DOI:10.1109/temc.2023.3234912
摘要
This article presents a physics-oriented, mathematically tractable, statistical wave model for analyzing the wave physics of high-frequency reverberation in complex cavity environments. The key ingredient is a vector dyadic stochastic Green's function (SGF) method that is derived from the Wigner's random matrix theory and Berry's random wave hypothesis. The SGF statistically replicates multipath, ray-chaotic communication between vector sources and vectorial electromagnetic fields at displaced observation points using generic, macroscopic parameters of the cavity environment. The work establishes a physics-based modeling and simulation capability that predicts the probabilistic behavior of backdoor coupling to complex electronic enclosures. Experimental results are supplied to validate the proposed work.
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