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克尔环形谐振器中对称性破缺的时间腔孤子的呼吸动力学

Breathing dynamics of symmetry-broken temporal cavity solitons in Kerr ring resonators.

作者信息

Xu Gang, Hill Lewis, Fatome Julien, Oppo Gian-Luca, Erkintalo Miro, Murdoch Stuart G, Coen Stéphane

出版信息

Opt Lett. 2022 Mar 15;47(6):1486-1489. doi: 10.1364/OL.449679.

Abstract

We investigate theoretically and experimentally the instabilities of symmetry-broken, vectorial, bright cavity solitons (CSs) of two-mode nonlinear passive Kerr resonators. Through comprehensive theoretical analyses of coupled Lugiato-Lefever equations, we identify two different breathing regimes where the two components of the vectorial CSs breathe respectively in-phase and out-of-phase. Moreover, we find that deep out-of-phase breathing can lead to intermittent self-switching of the two components, spontaneously transforming a soliton into its mirror-symmetric state. In this process, solitons are also sometimes observed to decay. All our theoretical predictions are confirmed in experiments performed in an optical fiber ring resonator, where CS symmetry breaking occurs across the polarization modes of the resonator. To the best of our knowledge, our study constitutes the first experimental report of breathing instabilities of multi-component optical solitons of driven nonlinear resonators.

摘要

我们对双模非线性无源克尔谐振器中对称性破缺的矢量亮腔孤子(CSs)的不稳定性进行了理论和实验研究。通过对耦合的Lugiato-Lefever方程进行全面的理论分析,我们确定了两种不同的呼吸模式,其中矢量CSs的两个分量分别以同相和异相的方式呼吸。此外,我们发现深度异相呼吸会导致两个分量的间歇性自切换,使孤子自发地转变为其镜对称状态。在此过程中,有时还会观察到孤子衰减。我们所有的理论预测都在光纤环形谐振器中进行的实验中得到了证实,在该谐振器中,CS对称性破缺发生在谐振器的偏振模式之间。据我们所知,我们的研究构成了驱动非线性谐振器多分量光学孤子呼吸不稳定性的第一份实验报告。

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