New soliton solutions for Chen-Lee-Liu and Burgers hierarchies and its Bäcklund transformations
arXiv:2603.23665 · doi:10.1016/j.nuclphysb.2026.117486
Abstract
Positive and negative flows of the Chen-Lee-Liu model and its various reductions, including Burgers hierarchy, are formulated within the framework of Riemann-Hilbert-Birkhoff decomposition with the constant grade two generator. Two classes of vacua, namely zero vacuum and constant non-zero vacuum can be realized within a centerless Heisenberg algebra. The tau functions for soliton solutions are obtained by a dressing method and vertex operators are constructed for both types of vacua. We are able to select and classify the soliton solutions in terms of the type of vertices involved. A judicious choice of vertices yields in a closed form a particular set of multi soliton solutions for the Burgers hierarchy. We develop and analyze a class of gauge-Bäcklund transformations that generate further multi soliton solutions from those obtained by dressing method by letting them interact with various integrable defects.
32 pages. Published in Nuclear Physics B 1017 (2026) 117486
References in corpus (7)
- Multisymplectic approach to integrable defects in the sine-Gordon model
- Negative flows of generalized KdV and mKdV hierarchies and their gauge-Miura transformations
- Gauge Miura and Backlund Transformations for Generalized -KdV Hierarchies
- Negative flows for several integrable models
- Generalized Backlund transformations for Affine Toda Hierarchies
- 3D-consistency of negative flows
- Generalized Riemann-Hilbert-Birkhoff Decomposition and a New Class of Higher Grading Integrable Hierarchies