English

Overcoming noise-agility trade-off in integrated lasers for precision sensing

Optics 2026-05-19 v1

Abstract

Lasers that combine narrow linewidths with rapid tunability are critical for applications such as coherent optical ranging, distributed fiber-optic sensing, and precision spectroscopy. Despite significant progress in integrated laser technologies, the concurrent realization of low phase noise and frequency agility on a single integrated platform remains challenging owing to a fundamental architectural trade-off: conventional integrated laser designs typically suppress phase noise via high-QQ resonators, yet the extended photon lifetimes inherent to such resonators intrinsically constrain tuning speed. Here, we address this noise-agility trade-off by introducing a laser architecture that achieves ultralow phase noise and ultrafast tunability simultaneously. Rather than relying on ultrahigh-QQ resonators for self-injection locking, our design employs strong synthetic feedback within a Pockels-tunable, resonator-enhanced distributed Bragg reflector to suppress phase noise. As a proof of concept, we demonstrate a hybrid integrated laser with a short-term linewidth of 29 Hz, realized using a lithium niobate external cavity with a loaded QQ of only 0.62 million. The adoption of a moderate resonator QQ relaxes the photon-lifetime constraint on tuning speed, enabling sub-exahertz-per-second tuning rates and a chirp nonlinearity as low as 0.14%. Leveraging this laser, we implement a frequency-modulated continuous-wave LiDAR system that achieves a relative ranging precision of 1.7×1041.7 \times 10^{-4} at a measurement rate of 1MSa s11\,\text{MSa s}^{-1}, without requiring complex chirp linearization techniques. We further demonstrate fiber-optic acoustic sensing capable of detecting sub-μϵ\mu\epsilon dynamic strain, underscoring the platform's versatility for high-speed precision optical measurements. Our work provides a route toward cost-effective yet high-performance sensing and metrology systems.

Keywords

Cite

@article{arxiv.2605.17491,
  title  = {Overcoming noise-agility trade-off in integrated lasers for precision sensing},
  author = {Di Yu and Yitian Tong and Yu Xia and Yuntao Zhu and Yuemin Li and Mingfei Liu and Zhaoting Geng and Yuhao Huang and Yaoran Huang and Zheng Li and Jie Wang and Yunqi Fu and Hongjie Liang and Hao Fang and Jinwen Lin and Xuewen Chen and Kang Li and Xinlun Cai and Chao Xiang},
  journal= {arXiv preprint arXiv:2605.17491},
  year   = {2026}
}

Comments

38 pages, 17 figures