English

Gain-assisted chiral soliton microcombs

Optics 2020-08-31 v1

Abstract

The emerging microresonator-based frequency combs revolutionize a broad range of applications from optical communications to astronomical calibration. Despite of their significant merits, low energy efficiency and the lack of all-optical dynamical control severely hinder the transfer of microcomb system to real-world applications. Here, by introducing active lasing medium into the soliton microcomb, for the first time, we experimentally achieve the chiral soliton with agile on-off switch and tunable dual-comb generation in a packaged microresonator. It is found that such a microresonator enables a soliton slingshot effect, the rapid soliton formation arising from the extra energy accumulation induced by inter-modal couplings. Moreover, tuning the erbium gain can generate versatile multi-soliton states, and extend the soliton operation window to a remarkable range over 18 GHz detuning. Finally, the gain-assisted chirality of counterpropagating soliton is demonstrated, which enables an unprecedented fast on-off switching of soliton microcombs. The non-trivial chiral soliton formation with active controllability inspires new paradigms of miniature optical frequency combs and brings the fast tunable soliton tools within reach.

Keywords

Cite

@article{arxiv.2008.12510,
  title  = {Gain-assisted chiral soliton microcombs},
  author = {Teng Tan and Hao-Jing Chen and Zhongye Yuan and Yan Yu and Qi-Tao Cao and Ning An and Qihuang Gong and Chee Wei Wong and Yunjiang Rao and Yun-Feng Xiao and Baicheng Yao},
  journal= {arXiv preprint arXiv:2008.12510},
  year   = {2020}
}

Comments

11 pages, 8 figures

R2 v1 2026-06-23T18:09:33.610Z