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具有背向散射的光学微谐振器中耗散克尔孤子和塑料子的产生及特性

Generation and properties of dissipative Kerr solitons and platicons in optical microresonators with backscattering.

作者信息

Lobanov V E, Shitikov A E, Galiev R R, Min'kov K N, Kondratiev N M

出版信息

Opt Express. 2020 Nov 23;28(24):36544-36558. doi: 10.1364/OE.410318.

Abstract

Generation and properties of dissipative Kerr solitons and platicons in optical microresonators are studied in the presence of the backscattering using the original analytical model considering a linear forward-backward waves coupling and nonlinear cross-action. We reveal that the backscattering may suppress the generation of the solitonic pulses or destabilize them for both anomalous and normal group velocity dispersion. We also demonstrate the possibility of switching between different soliton states. The influence of the linear and nonlinear coupling is analysed. It is shown that while the impact of the nonlinear coupling on the generation of the bright solitons is rather weak, it is significantly more pronounced for the platicon excitation process.

摘要

利用考虑线性向前-向后波耦合和非线性交叉作用的原始分析模型,研究了在存在背向散射的情况下,光学微腔中耗散克尔孤子和类孤子的产生及其特性。我们揭示,对于反常和正常群速度色散,背向散射可能会抑制孤子脉冲的产生或使其不稳定。我们还证明了在不同孤子状态之间切换的可能性。分析了线性和非线性耦合的影响。结果表明,虽然非线性耦合对亮孤子产生的影响相当微弱,但在类孤子激发过程中则更为显著。

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