English

Self-trapped spatially localized states in combined linear-nonlinear periodic potentials

Pattern Formation and Solitons 2019-09-25 v1 Quantum Gases Optics

Abstract

We analyze the existence and stability of two kinds of self-trapped spatially localized gap modes, gap solitons and truncated nonlinear Bloch waves, in one-and two-dimensional optical or matter-wave media with self-focusing nonlinearity, supported by a combination of linear and nonlinear periodic lattice potentials. The former is found to be stable once placed inside a single well of the nonlinear lattice, it is unstable otherwise. Contrary to the case with constant self-focusing nonlinearity, where the latter solution is always unstable, here, we demonstrate that it nevertheless can be stabilized by the nonlinear lattice since the model under consideration combines the unique properties of both the linear and nonlinear lattices. The practical possibilities for experimental realization of the predicted solutions are also discussed.

Keywords

Cite

@article{arxiv.1909.10951,
  title  = {Self-trapped spatially localized states in combined linear-nonlinear periodic potentials},
  author = {Jincheng Shi and Jianhua Zeng},
  journal= {arXiv preprint arXiv:1909.10951},
  year   = {2019}
}

Comments

7 pages, 6 figures, Accepted for publication

R2 v1 2026-06-23T11:24:23.532Z