Three-Wave Interaction Equations: Classical and Nonlocal Journal Article uri icon

Overview

abstract

  • Abstract.; A discussion of three-wave interaction systems with rapidly decaying data is provided. Included are the classical and two nonlocal three-wave interaction systems. These three-wave equations are formulated from underlying compatible linear systems and are connected to a third order linear scattering problem. The inverse scattering transform (IST) is carried out in detail for all these three-wave interaction equations. This entails obtaining and analyzing the direct scattering problem, discrete eigenvalues, symmetries, the inverse scattering problem via Riemann–Hilbert methods, minimal scattering data, and time dependence. In addition, soliton solutions illustrating energy sharing mechanisms are also discussed. A crucial step in the analysis is the use of adjoint eigenfunctions which connects the third order scattering problem to key eigenfunctions that are analytic in the upper/lower half planes. The general compatible nonlinear wave system and its classical and nonlocal three-wave reductions are asymptotic limits of physically significant nonlinear equations, including water/gravity waves with surface tension.

publication date

  • August 31, 2023

Date in CU Experts

  • November 12, 2025 10:54 AM

Full Author List

  • Ablowitz MJ; Luo X-D; Musslimani ZH

author count

  • 3

Other Profiles

International Standard Serial Number (ISSN)

  • 0036-1410

Electronic International Standard Serial Number (EISSN)

  • 1095-7154

Additional Document Info

start page

  • 4089

end page

  • 4139

volume

  • 55

issue

  • 4