Caso-Huerta M, Bu L, Chen S, Trillo S, Baronio F
Department of Information Engineering, University of Brescia, Via Branze 38, 25123 Brescia, Italy.
School of Physics and Frontiers Science Center for Mobile Information, Communication and Security, Southeast University, 211189 Nanjing, China.
Chaos. 2024 Jul 1;34(7). doi: 10.1063/5.0216445.
We present the fascinating phenomena of resonant radiation emitted by transient rogue waves in cubic and quadratic nonlinear media, particularly those shed from Peregrine solitons, one of the main wavepackets used today to model real-world rogue waves. In cubic media, it turns out that the emission of radiation from a Peregrine soliton can be attributed to the presence of higher-order dispersion, but is affected by the intrinsic local longitudinal variation of the soliton wavenumber. In quadratic media, we reveal that a two-color Peregrine rogue wave can resonantly radiate dispersive waves even in the absence of higher-order dispersion, subjected to a phase-matching mechanism that involves the second-harmonic wave, and to a concomitant difference-frequency generation process. In both cubic and quadratic media, we provide simple analytic criteria for calculating the radiated frequencies in terms of material parameters, showing excellent agreement with numerical simulations.
我们展示了立方和二次非线性介质中瞬态 rogue 波发射的共振辐射这一迷人现象,特别是那些从 Peregrine 孤子产生的辐射,Peregrine 孤子是当今用于模拟现实世界 rogue 波的主要波包之一。在立方介质中,事实证明,Peregrine 孤子的辐射发射可归因于高阶色散的存在,但受孤子波数固有局部纵向变化的影响。在二次介质中,我们揭示了即使在没有高阶色散的情况下,双色 Peregrine rogue 波也能通过涉及二次谐波的相位匹配机制以及伴随的差频产生过程共振辐射色散波。在立方和二次介质中,我们都提供了根据材料参数计算辐射频率的简单解析标准,与数值模拟结果显示出极好的一致性。