4.6 Article

Influence of stimulated Raman scattering on Kerr domain walls and localized structures

Journal

PHYSICAL REVIEW A
Volume 103, Issue 1, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.103.013507

Keywords

-

Funding

  1. Fonds National de la Recherche Scientifique F.R.S.-FNRS (Belgium)
  2. LABEX CEMPI [ANR-11-LABX-0007]
  3. Ministry of Higher Education and Research, Hauts de France council
  4. European Regional Development Fund (ERDF) through the Contract de Projets Etat-Region (CPER Photonics for Society P4S)
  5. Millennium Institute for Research in Optics (MIRO)
  6. FONDECYT Project [1180903]

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This study investigates the formation of bright and dark localized states in all-fiber resonators subject to stimulated Raman scattering under coherent optical injection. The Raman scattering breaks the reflection symmetry of the system and modifies the dynamics, stability, and locking of domain walls. This leads to the formation of both dark and bright moving localized states that are otherwise absent.
We investigate the influence of the stimulated Raman scattering on the formation of bright and dark localized states in all-fiber resonators subject to a coherent optical injection, when operating in the normal dispersion regime. In the absence of the Raman effect, and far from any modulational instability, localized structures form due to the locking of domain walls connecting two coexisting continuous wave states, and undergo a particular bifurcation structure known as collapsed snaking. The stimulated Raman scattering breaks the reflection symmetry of the system, and modifies the dynamics, stability, and locking of domain walls. This modification leads to the formation of, not only dark, but also bright moving localized states, which otherwise are absent. We perform a detailed bifurcation analysis of these localized states, and classify their dynamics and stability as a function of the main parameters of the system.

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