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标准保偏光纤中的前向受激布里渊散射和光机械非互易性。

Forward stimulated Brillouin scattering and opto-mechanical non-reciprocity in standard polarization maintaining fibres.

作者信息

Bashan Gil, Diamandi Hilel Hagai, London Yosef, Sharma Kavita, Shemer Keren, Zehavi Elad, Zadok Avi

机构信息

Faculty of Engineering and Institute for Nano-Technology and Advanced Materials, Bar-Ilan University, Ramat-Gan, 5290002, Israel.

出版信息

Light Sci Appl. 2021 Jun 7;10(1):119. doi: 10.1038/s41377-021-00557-y.

Abstract

Opto-mechanical interactions in guided wave media are drawing great interest in fundamental research and applications. Forward stimulated Brillouin scattering, in particular, is widely investigated in optical fibres and photonic integrated circuits. In this work, we report a comprehensive study of forward stimulated Brillouin scattering over standard, panda-type polarization maintaining fibres. We distinguish between intra-polarization scattering, in which two pump tones are co-polarized along one principal axis, and inter-polarization processes driven by orthogonally polarized pump waves. Both processes are quantified in analysis, calculations and experiment. Inter-modal scattering, in particular, introduces cross-polarization switching of probe waves that is non-reciprocal. Switching takes place in multiple wavelength windows. The results provide a first demonstration of opto-mechanical non-reciprocity of forward scatter in standard fibre. The inter-polarization process is applicable to distributed sensors of media outside the cladding and coating boundaries, where light cannot reach. The process may be scaled towards forward Brillouin lasers, optical isolators and circulators and narrowband microwave-photonic filters over longer sections of off-the-shelf polarization maintaining fibres.

摘要

导波介质中的光机械相互作用在基础研究和应用方面正引起极大的兴趣。特别是前向受激布里渊散射,在光纤和光子集成电路中得到了广泛研究。在这项工作中,我们报告了对标准熊猫型保偏光纤上前向受激布里渊散射的全面研究。我们区分了同偏振散射(其中两个泵浦光沿一个主轴共偏振)和由正交偏振泵浦波驱动的异偏振过程。这两个过程都在分析、计算和实验中进行了量化。特别是,模间散射会引入探测波的交叉偏振切换,这种切换是非互易的。切换发生在多个波长窗口。这些结果首次证明了标准光纤中前向散射的光机械非互易性。异偏振过程适用于包层和涂层边界之外光无法到达的介质的分布式传感器。该过程可扩展用于前向布里渊激光器、光隔离器和环行器以及基于现成保偏光纤更长段的窄带微波光子滤波器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea40/8180518/6a11941561d1/41377_2021_557_Fig1_HTML.jpg

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