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Brillouin Dynamic Gratings—A Practical Form of Brillouin Enhanced Four Wave Mixing in Waveguides: The First Decade and Beyond

机译:布里渊动态光栅-布里渊增强型四波混频在波导中的实用形式:第一个十年及以后

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摘要

Brillouin-Enhanced Four-Wave-Mixing techniques, which couple four optical beams through Brillouin nonlinearity, have gained popularity in the 1980’s largely owing to their phase conjugation properties. Experiments were mainly conducted in liquid cells. The interest in Brillouin-Enhanced Four-Wave-Mixing has reawakened in the 2000’s, following the quest for dynamically reconfigurable gratings in optical fibers. Termed Brillouin Dynamic Grating this time around, it is, in fact, an acoustic wave, optically generated by stimulated Brillouin scattering process between two pump waves. The acoustic wave either carries the coherent information encoded by the pump beams, or in the case of sensing applications, its properties are determined by the environmental parameters. This information, in turn, is imparted to the third phase-matched optical probe wave through the elasto-optic effect. Over the last decade, this mechanism allowed for the realization of many all-optical signal processing functions and has proven instrumental in distributed sensing applications. This paper describes the basics, as well as the state of the art, of BDG-based applications in optical fibers. It also surveys the efforts being done to carry over these concepts to the photonic chip level.
机译:布里渊增强四波混频技术通过布里渊非线性耦合使四个光束耦合,在1980年代,由于其相位共轭特性,这种方法得到了普及。实验主要在液体细胞中进行。在寻求对光纤中的动态可重配置光栅的需求之后,对布里渊增强型四波混频的兴趣在2000年代重新唤起。这次被称为布里渊动态光栅,实际上是声波,它是由两个泵浦波之间的受激布里渊散射过程光学产生的。声波或者承载由泵浦光束编码的相干信息,或者在传感应用的情况下,其特性由环境参数确定。该信息又通过弹光效应传递给第三相位匹配的光学探测波。在过去的十年中,该机制允许实现许多全光信号处理功能,并已证明在分布式传感应用中具有重要作用。本文介绍了光纤中基于BDG的应用的基础知识和最新技术。它还调查了为将这些概念推广到光子芯片级别所做的努力。

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