Multiple double-valley and single-valley dark solitons in the complex modified Korteweg-de Vries equation: shape-preserving collisions and shape-altering collisions
Yingcan Huang, Jingsong He, T. Kanna, Jiguang Rao

TL;DR
This paper classifies and analyzes the interactions of two types of dark solitons in the complex modified Korteweg-de Vries equation, revealing shape-preserving and shape-altering collision behaviors with detailed structural and dynamical insights.
Contribution
It introduces a classification of dark solitons into type-I and type-II with distinct profiles and phase behaviors, and explores their collision dynamics including shape-preserving and shape-altering interactions.
Findings
Type-I dark solitons have multiple valley profiles and exhibit shape-preserving collisions.
Type-II dark solitons support a single valley profile and undergo only phase shifts during collisions.
Coexistence of types leads to shape-altering collisions affecting type-I solitons.
Abstract
The shape-preserving and shape-altering collisions of dark solitons are investigated in the complex modified Korteweg-de Vries equation. The obtained dark soliton solutions are classified into two distinct types, referred to as type-I and type-II dark solitons, which exhibit fundamentally different structural and dynamical characteristics. A single type-I dark soliton is symmetric about its center and admits three distinct valley profiles, namely single-valley, double-valley, and flat-bottom structures, whereas a single type-II dark soliton only supports a single-valley profile. These two types of dark solitons differ in their phase behaviors as the spatial variable varies from to , as well as in their velocity--amplitude relations. For multiple pure type-I dark solitons, collisions are shape-preserving; however, a nontrivial collective effect is revealed in which…
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Taxonomy
TopicsNonlinear Photonic Systems · Nonlinear Waves and Solitons · Dust and Plasma Wave Phenomena
