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Observation of transverse coherent backscattering in disordered photonic structures

机译:无序光子结构中横向相干反向散射的观察

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摘要

Coherent backscattering, also referred to as weak localization, is an exciting multidisciplinary phenomenon that appears in disordered systems of multiple coherent-wave scattering. Providing proper scattering conditions in (2 + 1) dimensional randomized photonic systems, we optically implement, observe, and analyse transverse coherent backscattering. Ensembles of disordered wave-guide structures are prepared by random-intensity nondiffracting writing entities according to the beam’s intensity distribution. The structure size of the induced potentials naturally define an effective mobility edge, and thus, we identify a crucial impact of the plane probe waves’ spatial frequency on the strength and shape of the spectral coherent backscattering signal. We additionally observe transverse elastic scattering as a precursor of weak localization. To testify the coherent character as a fundamental condition for coherent backscattering, we propose a scheme to continuously reduce the spatial coherence of the probe beam which directly reduces the degree of localization and coherent backscattering. With our experiments, we propose a testing platform that allows comprehensive examination of coherent backscattering with a broad set of preparation parameters and under uncritical laboratory conditions. Our results are directly transferable to more complex systems of disordered wave potentials, not being restricted to photonic systems.
机译:相干反向散射,也称为弱局域性,是一种令人兴奋的多学科现象,出现在多个相干波散射的无序系统中。在(2 + 1)维随机光子系统中提供适当的散射条件,我们在光学上实现,观察和分析横向相干反向散射。无序波导结构的集合体是由随机强度的非衍射书写实体根据光束的强度分布而准备的。感应电位的结构大小自然定义了有效的迁移率边缘,因此,我们确定了平面探测波的空间频率对频谱相干反向散射信号的强度和形状的关键影响。我们还观察到横向弹性散射是弱定位的先兆。为了证明相干特性是相干反向散射的基本条件,我们提出了一种方案,可不断减小探测光束的空间相干性,从而直接降低定位度和相干反向散射的程度。通过我们的实验,我们提出了一个测试平台,该平台可以在不重要的实验室条件下,通过广泛的制备参数对相干后向散射进行全面检查。我们的结果可直接转移到更复杂的无序波势系统,而不仅限于光子系统。

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