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From African 'tam-tam' to nonlinear optics [Invited]

机译:从非洲“TAM-TAM”到非线性光学[邀请]

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摘要

The field of nonlinear optics has been investigated extensively since its beginning in 1961. This development is in both the theory of nonlinear effects and the theory of nonlinear interactions in nonlinear media, and in the applications of nonlinear devices. The mathematical basis of nonlinear optics is Maxwell's system of equations governing propagation of electromagnetic waves in a material medium, combined with relations accounting for the nonlinear response of the medium to the electromagnetic field. This review paper presents the contribution of African researchers to recent theoretical advances in the study of nonlinear interactions between electromagnetic waves with different types of nonlinear media, such as optical fibers, metamaterials, and Bose-Einstein condensates, that constitute a fascinating source of temporal, spatial, and spatiotemporal phenomena in the physics of light, and that lead to modulational instability, optical pulse compression, rogue waves, PT-symmetric phenomena, supercontinuum generation, and dissipative solitons. (C) 2020 Optical Society of America
机译:自1961年开始,非线性光学领域得到了广泛的研究。这一发展既包括非线性效应理论,也包括非线性介质中的非线性相互作用理论,以及非线性器件的应用。非线性光学的数学基础是麦克斯韦方程组,该方程组控制电磁波在材料介质中的传播,并结合了解释介质对电磁场的非线性响应的关系。这篇综述文章介绍了非洲研究人员在研究电磁波与不同类型的非线性介质(如光纤、超材料和玻色-爱因斯坦凝聚体)之间的非线性相互作用方面的最新理论进展,这些非线性介质构成了光物理中时间、空间和时空现象的迷人来源,这会导致调制不稳定性、光脉冲压缩、流氓波、PT对称现象、超连续谱产生和耗散孤子。(C) 2020美国光学学会

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