Square Waves and Bykov T-points in a Delay Algebraic Model for the Kerr-Gires-Tournois Interferometer

Stöhr, M.; Koch, E.R.; Javaloyes, J.; Gurevich,S.V.; Wolfrum, M.

Research article (journal) | Peer reviewed

Abstract

We study theoretically the mechanisms of square wave formation of a vertically emitting micro-cavity operated in the Gires–Tournois regime that contains a Kerr medium and that is subjected to strong time-delayed optical feedback and detuned optical injection. We show that in the limit of large delay, square wave solutions of the time-delayed system can be treated as relative homoclinic solutions of an equation with an advanced argument. Based on this, we use concepts of classical homoclinic bifurcation theory to study different types of square wave solutions. In particular, we unveil the mechanisms behind the collapsed snaking scenario of square waves and explain the formation of complex-shaped multistable square wave solutions through a Bykov T-point. Finally, we relate the position of the T-point to the position of the Maxwell point in the original time-delayed system.

Details about the publication

JournalChaos
Volume33
Issue11
Page range113105-113105
Article number113105
StatusPublished
Release year2023
Language in which the publication is writtenEnglish
DOI10.1063/5.0173320
Link to the full texthttps://pubs.aip.org/aip/cha/article/33/11/113105/2919247
KeywordsTime-Delayed Systems, Laser Dynamics, Nonlinear Dynamics

Authors from the University of Münster

Gurevich, Svetlana
Professur für Theoretische Physik (Prof. Thiele)
Center for Nonlinear Science
Center for Multiscale Theory and Computation
Institute for Theoretical Physics
Koch, Elias
Institute for Theoretical Physics
Professur für Theoretische Physik (Prof. Thiele)