English

Stimulated generation of deterministic platicon frequency microcombs

Optics 2022-03-25 v1

Abstract

Dissipative Kerr soliton generation in chip-scale nonlinear resonators has recently observed remarkable advances, spanning from massively-parallel communications, self-referenced oscillators, to dual-comb spectroscopy. Often working in the anomalous dispersion regime, unique driving protocols and dispersion in these nonlinear resonators have been examined to achieve the soliton and soliton-like temporal pulse shapes and coherent frequency comb generation. The normal dispersion regime provides a complementary approach to bridge the nonlinear dynamical studies, including the possibility of square pulse formation with flat-top plateaus, or platicons. Here we report observations of square pulse formation in chip-scale frequency combs, through stimulated pumping at one free-spectral-range and in silicon nitride rings with +55 fs2/mm normal group velocity dispersion. Tuning of the platicon frequency comb via a varied sideband modulation frequency is examined in both spectral and temporal measurements. Determined by second-harmonic auto-correlation and cross-correlation, we observe bright square platicon pulse of 17 ps pulsewidth on a 19 GHz flat frequency comb. With auxiliary-laser-assisted thermal stabilization, we surpass the thermal bistable dragging and extend the mode-locking access to narrower 2 ps platicon pulse states, supported by nonlinear dynamical modeling and boundary limit discussions.

Keywords

Cite

@article{arxiv.2203.12711,
  title  = {Stimulated generation of deterministic platicon frequency microcombs},
  author = {Hao Liu and Shu-Wei Huang and Wenting Wang and Jinghui Yang and Mingbin Yu and Dim-Lee Kwong and Pierre Colman and Chee Wei Wong},
  journal= {arXiv preprint arXiv:2203.12711},
  year   = {2022}
}

Comments

28 pages, 11 figures

R2 v1 2026-06-24T10:23:57.695Z