Reversible Self-Replication of Spatio-Temporal Kerr Cavity Patterns
Abstract
We uncover a novel and robust phenomenon that causes the gradual self-replication of spatiotemporal Kerr cavity patterns in cylindrical microresonators. These patterns are inherently synchronised multi-frequency combs. Under proper conditions, the axially-localized nature of the patterns leads to a fundamental drift instability that induces transitions amongst patterns with a different number of rows. Self-replications, thus, result in the stepwise addition or removal of individual combs along the cylinder's axis. Transitions occur in a fully reversible and, consequently, deterministic way. The phenomenon puts forward a novel paradigm for Kerr frequency comb formation and reveals important insights into the physics of multi-dimensional nonlinear patterns.
Cite
@article{arxiv.2101.05729,
title = {Reversible Self-Replication of Spatio-Temporal Kerr Cavity Patterns},
author = {Salim B. Ivars and Yaroslav V. Kartashov and Lluis Torner and J. Alberto Conejero and Carles Milián},
journal= {arXiv preprint arXiv:2101.05729},
year = {2021}
}
Comments
13 pages, 9 figures, to appear in Physical Review Letters