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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Classical versus quantum structure of the scattering probability matrix: Chaotic waveguides - art. no. 046605
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Classical versus quantum structure of the scattering probability matrix: Chaotic waveguides - art. no. 046605

机译:散射概率矩阵的经典结构与量子结构:混沌波导-艺术。没有。 046605

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摘要

The purely classical counterpart of the scattering probability matrix (SPM) S-n,S-m(2) of the quantum scattering matrix S is defined for two-dimensional quantum waveguides for an arbitrary number of propagating modes M. We compare the quantum and classical structures of S-n,S-m(2) for a waveguide with generic Hamiltonian chaos. It is shown that even for a moderate number of channels, knowledge of the classical structure of the SPM allows us to predict the global structure of the quantum one and, hence, understand important quantum transport properties of waveguides in terms of purely classical dynamics. It is also shown that the SPM, being an intensity measure, can give additional dynamical information to that obtained by the Poincare maps. [References: 47]
机译:对于任意数量的传播模M,为二维量子波导定义了量子散射矩阵S的散射概率矩阵(SPM) Sn,Sm (2)的纯经典对应物。我们比较了量子结构和经典结构具有一般哈密顿混沌的波导的 Sn,Sm (2)的值。结果表明,即使对于中等数量的通道,对SPM经典结构的了解也使我们能够预测一个量子的整体结构,因此,从纯经典动力学的角度理解波导的重要量子传输特性。还表明,作为强度度量的SPM可以为Poincare贴图获得的动力学信息提供其他动力信息。 [参考:47]

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