Opt Express. 2023 Feb 27;31(5):8307-8324. doi: 10.1364/OE.481676.
We present a systematic investigation of the resonant radiation emitted by localized soliton-like wave-packets supported by second-harmonic generation in the cascading regime. We emphasize a general mechanism which allows for the resonant radiation to grow without the need for higher-order dispersion, primarily driven by the second-harmonic component, while radiation is also shed around the fundamental-frequency component through parametric down-conversion processes. The ubiquity of such a mechanism is revealed with reference to different localized waves such as bright solitons (both fundamental and second-order), Akhmediev breathers, and dark solitons. A simple phase matching condition is put forward to account for the frequencies radiated around such solitons, which agrees well with numerical simulations performed against changes of material parameters (say, phase mismatch, dispersion ratio). The results provide explicit understanding of the mechanism of soliton radiation in quadratic nonlinear media.
我们对二次谐波产生的级联状态下局域类孤子波包所辐射的共振辐射进行了系统研究。我们强调了一种通用机制,该机制允许在不需要高阶色散的情况下使共振辐射增长,主要由二次谐波分量驱动,同时通过参量下转换过程在基频分量周围也会产生辐射。通过参考不同的局域波,如明孤子(基频和二次谐波)、Akhmediev 呼吸子和暗孤子,揭示了这种机制的普遍性。我们提出了一个简单的相位匹配条件来解释这种孤子周围辐射的频率,该条件与针对材料参数变化(例如相位失配、色散比)进行的数值模拟吻合较好。该结果明确了二次非线性介质中孤子辐射的机制。