Solitons in nonlinear lattices

物理 非线性系统 孤子 领域(数学) 调制(音乐) 理论(学习稳定性) 薛定谔猫 统计物理学 符号(数学) 玻色-爱因斯坦凝聚体 理论物理学 量子力学 数学分析 机器学习 纯数学 计算机科学 数学 声学
作者
Yaroslav V. Kartashov,Boris A. Malomed,Lluís Torner
出处
期刊:Reviews of Modern Physics [American Physical Society]
卷期号:83 (1): 247-305 被引量:889
标识
DOI:10.1103/revmodphys.83.247
摘要

This article offers a comprehensive survey of results obtained for solitons and complex nonlinear wave patterns supported by nonlinear lattices (NLs), which represent a spatially periodic modulation of the local strength and sign of the nonlinearity, and their combinations with linear lattices. A majority of the results obtained, thus far, in this field and reviewed in this article are theoretical. Nevertheless, relevant experimental settings are also surveyed, with emphasis on perspectives for implementation of the theoretical predictions in the experiment. Physical systems discussed in the review belong to the realms of nonlinear optics (including artificial optical media, such as photonic crystals, and plasmonics) and Bose-Einstein condensation. The solitons are considered in one, two, and three dimensions. Basic properties of the solitons presented in the review are their existence, stability, and mobility. Although the field is still far from completion, general conclusions can be drawn. In particular, a novel fundamental property of one-dimensional solitons, which does not occur in the absence of NLs, is a finite threshold value of the soliton norm, necessary for their existence. In multidimensional settings, the stability of solitons supported by the spatial modulation of the nonlinearity is a truly challenging problem, for theoretical and experimental studies alike. In both the one-dimensional and two-dimensional cases, the mechanism that creates solitons in NLs in principle is different from its counterpart in linear lattices, as the solitons are created directly, rather than bifurcating from Bloch modes of linear lattices.

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