Breather transition dynamics, Peregrine combs/walls and modulation instability in a variable-coefficient nonlinear Schr\"odinger equation with higher-order effects
Lei Wang, Jian-Hui Zhang, Chong Liu, Min Li, Feng-Hua Qi

TL;DR
This paper investigates a variable-coefficient nonlinear Schrödinger equation with higher-order effects, revealing how different nonlinear wave solutions transition, interact, and can be controlled, with implications for optical fiber systems and rogue wave management.
Contribution
It analytically derives transition conditions, explores wave interactions, and introduces the concept of Peregrine combs and walls within the vc-NLS framework with higher-order effects.
Findings
Transition condition links GVD and TOD linearly.
GVD controls the number of peaks in multi-peak solitons.
Peregrine combs can transform into Peregrine walls under certain conditions.
Abstract
We study a variable-coefficient nonlinear Schr\"odinger (vc-NLS) equation with higher-order effects. We show that the breather solution can be converted into four types of nonlinear waves on constant backgrounds including the multi-peak solitons, antidark soliton, periodic wave and W-shaped soliton. The transition condition requiring the group velocity dispersion (GVD) and third-order dispersion (TOD) to scale linearly is obtained analytically. We display several kinds of elastic interactions between the transformed nonlinear waves. We discuss the dispersion management of multi-peak soliton, which indicates that the GVD coefficient controls the number of peaks of the wave while the TOD coefficient has compression effect. The gain or loss has influence on the amplitudes of the multi-peak soliton. We further derive the breather multiple births by using multiple compression points of…
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