English

Mode locking via delayed orthogonal-polarization reinjection in semiconductor VCSELs

Optics 2025-06-19 v2

Abstract

We demonstrate harmonic mode-locking in a semiconductor VCSEL using polarization-controlled delayed feedback. By integrating a rotatable λ\lambda/2-plate within an external cavity, we achieve precise control over pulse multiplicity and repetition rates in TE and TM modes. For the TE mode, increasing the λ\lambda/2-plate angle (θ\theta) transitions the system from disordered quasi-periodic states to stable fundamental (single-pulse) and harmonic dual-pulse mode-locking. Polarization-resolved measurements and cross-correlation analyses reveal coherent pulse alignment at half the cavity roundtrip time, enabled by polarization-mediated nonlinear dynamics. This work establishes cross-polarization feedback as a fundamental mechanism for ultrafast pulse engineering, advancing the understanding of polarization-mediated nonlinear dynamics in laser physics.

Keywords

Cite

@article{arxiv.2504.11965,
  title  = {Mode locking via delayed orthogonal-polarization reinjection in semiconductor VCSELs},
  author = {T. Wang and Y. Ma and Z. Li and Y. Li and Z. Tu and Y. Zhang and G. Xu and S. Baland and S. Xiang and Y. Hao},
  journal= {arXiv preprint arXiv:2504.11965},
  year   = {2025}
}
R2 v1 2026-06-28T23:00:21.929Z