论文标题

违反T不变的情况如何导致随着波动系统的开放性的增加而增强的反向散射

How T-invariance violation leads to an enhanced backscattering with increasing openness of a wave-chaotic system

论文作者

Bialous, Malgorzata, Dietz, Barbara, Sirko, Leszek

论文摘要

我们报告了对弹性增强的依赖性的实验研究,即,向后方向增强散射,而不是散射,而散射在波浪系统的其他方向上,部分违反了时间逆转(t)对其开放性的散射。弹性增强因子是量子混沌散射的特征,在实验中,例如复合 - 核反应,仅横截面,即相关散射基质元件的模量。在实验中,一个具有四分之一弓形的形状的量子台球会产生混乱的动力学,由平坦的微波腔模仿。部分t不变违反了不同强度0 <xi <1由两个磁化铁氧体诱导。开放性是通过增加开放通道的数量为2 <m <9的,同时保持内部吸收不变的情况来控制的。我们研究了XI函数的弹性增强,并发现对于固定的m,它会随时间不变性违规而降低,而随着开放性的增加,其增加,超过一定值的XI> 0.2。后一个结果令人惊讶,因为它与在保留t不变性的系统中观察到的结果相反(XI = 0)。我们得出的结论是,t-侵犯违规对弹性增强的影响随后在开放性上占主导地位,这对于依靠增强的反向散射的实验至关重要,因为通常,开放性的降低是不可行的。在这些实验结果的推动下,我们还基于随机矩阵理论进行了理论研究,从而证实了我们的发现。

We report on the experimental investigation of the dependence of the elastic enhancement, i.e., enhancement of scattering in backward direction over scattering in other directions of a wave-chaotic system with partially violated time-reversal (T ) invariance on its openness. The elastic enhancement factor is a characteristic of quantum chaotic scattering which is of particular importance in experiments, like compound-nuclear reactions, where only cross sections, i.e., the moduli of the associated scattering matrix elements are accessible. In the experiment a quantum billiard with the shape of a quarter bow-tie, which generates a chaotic dynamics, is emulated by a flat microwave cavity. Partial T-invariance violation of varying strength 0 < xi < 1 is induced by two magnetized ferrites. The openness is controlled by increasing the number M of open channels, 2 < M < 9, while keeping the internal absorption unchanged. We investigate the elastic enhancement as function of xi and find that for a fixed M it decreases with increasing time-reversal invariance violation, whereas it increases with increasing openness beyond a certain value of xi > 0.2. The latter result is surprising because it is opposite to that observed in systems with preserved T invariance (xi = 0). We come to the conclusion that the effect of T -invariance violation on the elastic enhancement then dominates over the openness, which is crucial for experiments which rely on enhanced backscattering, since, generally, a decrease of the openness is unfeasible. Motivated by these experimental results we, furthermore, performed theoretical investigations based on random matrix theory which confirm our findings.

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