Polarization modulation instability in a nonlinear fiber Kerr resonator
Julien Fatome (LICB), Bertrand Kibler, Fran\c{c}ois Leo, Abdelkrim, Bendahmane, Gian-Luca Oppo, Bruno Garbin, Stuart Murdoch, Miro Erkintalo,, St\'ephane Coen

TL;DR
This paper investigates polarization modulation instability in a nonlinear fiber Kerr resonator, demonstrating experimental control and numerical modeling of stationary and period-doubled patterns influenced by intracavity birefringence.
Contribution
It provides the first detailed experimental and numerical analysis of polarization modulation instability in a Kerr resonator, highlighting control via birefringence and phase detuning.
Findings
Experimental observation of PMI in a fiber ring resonator.
Birefringence controls the nature of generated patterns.
Numerical simulations agree with experimental results.
Abstract
We report on the experimental and numerical observation of polarization modulation instability (PMI) in a nonlinear fiber Kerr resonator. This phenomenon is phased-matched through the relative phase detuning between the intracavity fields associated with the two principal polarization modes of the cavity. Our experimental investigation is based on a 12-m long fiber ring resonator in which a polarization controller is inserted to finely control the level of intra-cavity birefringence. Depending on the amount of birefringence, the temporal patterns generated via PMI are found to be either stationary or to exhibit a period-doubled dynamics. Experimental results are in good agreement with numerical simulations based on an Ikeda map for the two orthogonally polarized modes. Our study provides new insights into the control of modulation instability in multimode Kerr resonators. Modulation…
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