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Accelerated nonlinear interactions in graded-index multimode fibers

机译:渐变折射率多模光纤中的加速非线性相互作用

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摘要

Multimode optical fibers have recently reemerged as a viable platform for addressing a number of long-standing issues associated with information bandwidth requirements and power-handling capabilities. As shown in recent studies, the complex nature of such heavily multimoded systems can be effectively exploited to observe altogether novel physical effects arising from spatiotemporal and intermodal linear and nonlinear processes. Here, we study for the first time, accelerated nonlinear intermodal interactions in core-diameter decreasing multimode fibers. We demonstrate that in the anomalous dispersion region, this spatiotemporal acceleration can lead to relatively blue-shifted multimode solitons and blue-drifting dispersive wave combs, while in the normal domain, to a notably flat and uniform supercontinuum, extending over 2.5 octaves. Our results pave the way towards a deeper understanding of the physics and complexity of nonlinear, heavily multimoded optical systems, and could lead to highly tunable optical sources with very high spectral densities.
机译:多模光纤最近重新成为一个可行的平台,用于解决与信息带宽要求和功率处理能力相关的许多长期存在的问题。如最近的研究所示,可以有效地利用这种高度多模态系统的复杂性,以观察由时空和模态线性和非线性过程引起的全新物理效应。在这里,我们首次研究了纤芯直径减小的多模光纤中加速的非线性多峰相互作用。我们证明,在反常色散区域中,这种时空加速度会导致相对蓝移的多模孤子和蓝色漂移色散波梳,而在正常域中,会产生显着平坦且均匀的超连续谱,延伸超过2.5个八度。我们的结果为深入理解非线性,高度多模态的光学系统的物理特性和复杂性铺平了道路,并可能导致具有非常高的光谱密度的高度可调光源。

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