论文标题

振荡的振荡双色孤子分子的谐振库希 - 炸弹样的多频辐射

Resonant Kushi-comb-like multi-frequency radiation of oscillating two-color soliton molecules

论文作者

Melchert, O., Willms, S., Oreshnikov, I., Yulin, A., Morgner, U., Babushkin, I., Demircan, A.

论文摘要

具有两个不同域异常分散域的非线性波导可以支持分子样的两色脉冲化合物的形成。它们由两个紧密绑定的子之前的频率组成,其频率基因座被巨大的频率间隙隔开。扰动这种两色脉冲化合物触发周期性振幅和宽度变化,让人联想到分子振动。随着扰动强度的增加,脉冲化合物的动力学从谐波振荡到非线性振荡。周期性振幅变化使脉冲化合物与分散波的耦合,从而导致多频辐射的谐振剂发射。我们证明了共振的位置可以通过相匹配条件来精确预测。如果脉冲化合物由一对相同的子螺栓组成,则固有的对称性会导致共振光谱中的脱落性。弱扰动会提高现有的变性,并使共振线分为多个线。强烈的扰动导致更复杂的发射光谱,其特征是由Cherenkov辐射引起的良好分离光谱带和其他四波混合过程。

Nonlinear waveguides with two distinct domains of anomalous dispersion can support the formation of molecule-like two-color pulse compounds. They consist of two tightly bound subpulses with frequency loci separated by a vast frequency gap. Perturbing such a two-color pulse compound triggers periodic amplitude and width variations, reminiscent of molecular vibrations. With increasing strength of perturbation, the dynamics of the pulse compound changes from harmonic to nonlinear oscillations. The periodic amplitude variations enable coupling of the pulse compound to dispersive waves, resulting in the resonant emission of multi-frequency radiation. We demonstrate that the location of the resonances can be precisely predicted by phase-matching conditions. If the pulse compound consists of a pair of identical subpulses, inherent symmetries lead to degeneracies in the resonance spectrum. Weak perturbations lift existing degeneracies and cause a splitting of the resonance lines into multiple lines. Strong perturbations result in more complex emission spectra, characterized by well separated spectral bands caused by resonant Cherenkov radiation and additional four-wave mixing processes.

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