Blocky Diagonalized Scattering Matrices in Chaotic Scattering with Direct Processes

Q2 Physics and Astronomy
F. Castañeda-Ramírez, M. Martínez-Mares
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引用次数: 0

Abstract

Scattering matrices that can be diagonalized by a rotation through an angle θ in 2×2 blocks of independent scattering matrices of rank N, are considered. Assuming that the independent scattering matrices are chosen from one of the circular ensembles, or from the Poisson kernel, the 2N×2N scattering matrix may describe the scattering through chaotic cavities with reduced symmetry in the absence, or presence, of direct processes, respectively. To illustrate the effect of such symmetry, the statistical distribution of the dimensionless conductance through a ballistic chaotic cavity in the presence of direct processes is analyzed for N=1 using analytical calculations. We make a conjecture for N=2 in the absence of direct processes, which is verified by numerical random-matrix theory simulations, and the first two moments are calculated analytically for arbitrary N.
直接过程混沌散射中的块状对角化散射矩阵
考虑了在2×2中N阶独立散射矩阵块通过旋转角度θ可对角化的散射矩阵。假设从一个圆形系综或泊松核中选择独立的散射矩阵,2N×2N散射矩阵可以分别描述在没有或存在直接过程时对称性降低的混沌腔中的散射。为了说明这种对称性的影响,利用解析计算分析了N=1时弹道混沌腔中存在直接过程时无量纲电导的统计分布。在没有直接过程的情况下,我们提出了N=2的一个猜想,并通过数值随机矩阵理论模拟验证了这一猜想,并对任意N的前两个矩进行了解析计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quantum Reports
Quantum Reports Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
3.30
自引率
0.00%
发文量
33
审稿时长
10 weeks
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