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存在吸收时通过经典混沌腔的波散射:一种信息论模型。

Wave scattering through classically chaotic cavities in the presence of absorption: An information-theoretic model.

作者信息

Kogan E, Mello PA, Liqun H

机构信息

Minerva Center and Jack and Pearl Resnick Institute of Advanced Technology, Department of Physics, Bar-Ilan University, Ramat-Gan 52900, Israel.

出版信息

Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Jan;61(1):R17-20. doi: 10.1103/physreve.61.r17.

DOI:10.1103/physreve.61.r17
PMID:11046362
Abstract

We propose an information-theoretic model for the transport of waves through a chaotic cavity in the presence of absorption. The entropy of the S-matrix statistical distribution is maximized, with the constraint =alphan: n is the dimensionality of S, and 0</=alpha</=1, alpha=0(1) meaning complete (no) absorption. For strong absorption our result agrees with a number of analytical calculations already given in the literature. In that limit, the distribution of the individual (angular) transmission and reflection coefficients becomes exponential (Rayleigh statistics), even for n=1. For n>>1 Rayleigh statistics is attained even with no absorption; here, we extend the study to alpha<1. The model is compared with random-matrix-theory numerical simulations: it describes the problem very well for strong absorption, but fails for moderate and weak absorptions. Thus, in the latter regime, some important physical constraint is missing in the construction of the model.

摘要

我们提出了一种信息论模型,用于研究在存在吸收的情况下波通过混沌腔的传输。S矩阵统计分布的熵在约束条件<Tr SS†>=αn(n为S的维度,0≤α≤1,α = 0(1)表示完全(无)吸收)下达到最大化。对于强吸收情况,我们的结果与文献中已有的一些解析计算结果一致。在该极限下,即使对于n = 1,单个(角向)透射和反射系数的分布也变为指数分布(瑞利统计)。对于n>>1,即使没有吸收也能达到瑞利统计;在此,我们将研究扩展到α<1的情况。该模型与随机矩阵理论数值模拟进行了比较:对于强吸收情况,它能很好地描述该问题,但对于中等吸收和弱吸收情况则失效。因此,在后一种情况下,模型构建中缺少一些重要的物理约束。

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