光纤中一维非线性Schrödinger方程的物理学:流氓波、调制不稳定性和自聚焦现象

Q1 Physics and Astronomy
François Copie, Stéphane Randoux, Pierre Suret
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引用次数: 58

摘要

我们回顾了在聚焦区由可积一维非线性Schrödinger方程(1DNLSE)描述的物理系统中导致相干结构出现的不同动力机制。在这种情况下,局域和相干结构往往与异常波事件有关。我们着重于一维光学实验,特别是(单模)光纤实验。在1DNLSE的聚焦区,由平面波的非局域扰动引起的所谓调制不稳定性(MI)是最常见的现象。除了标准的MI外,其他机制也对异常波的出现负责。我们将不稳定定态的小扰动(平面波)和无扰动的大脉冲自聚焦引起的不同场景进行了分类。在前一种情况下,扰动可以是局部的、全局的、随机的或确定性的。在后一种情况下,可以在孤立脉冲或光功率的大初始波动下观察到自聚焦动力学。我们回顾了所有这些不同场景下局部结构出现的动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Physics of the one-dimensional nonlinear Schrödinger equation in fiber optics: Rogue waves, modulation instability and self-focusing phenomena

We review the different dynamical mechanisms leading to the emergence of coherent structures in physical systems described by the integrable one-dimensional nonlinear Schrödinger equation (1DNLSE) in the focusing regime. In this context, localized and coherent structures are very often associated to rogue wave events. We focus on one-dimensional optical experiments and in particular on (single mode) optical fibers experiments. In the focusing regime of 1DNLSE, the so-called modulation instability (MI), arising from nonlocal perturbation of the plane waves, is the most common phenomenon. Alongside the standard MI, other mechanisms are responsible for the emergence of rogue waves. We classify the different scenarii by considering those induced by small perturbations of unstable stationary state (the plane waves) and the ones arising from the self-focusing of large pulses without any perturbation. In the former case, the perturbations can be local, global, random or deterministic. In the latter case, the self-focusing dynamics can be observed both with isolated pulses or with large initial fluctuations of the optical power. We review the dynamics of emergence of localized structures in all these different scenarii.

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来源期刊
Reviews in Physics
Reviews in Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
21.30
自引率
0.00%
发文量
8
审稿时长
98 days
期刊介绍: Reviews in Physics is a gold open access Journal, publishing review papers on topics in all areas of (applied) physics. The journal provides a platform for researchers who wish to summarize a field of physics research and share this work as widely as possible. The published papers provide an overview of the main developments on a particular topic, with an emphasis on recent developments, and sketch an outlook on future developments. The journal focuses on short review papers (max 15 pages) and these are freely available after publication. All submitted manuscripts are fully peer-reviewed and after acceptance a publication fee is charged to cover all editorial, production, and archiving costs.
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