English

Investigation of Mode Coupling in Normal Dispersion Silicon Nitride Microresonators for Kerr Frequency Comb Generation

Optics 2014-05-27 v1

Abstract

Kerr frequency combs generated from microresonators are the subject of intense study. Most research employs microresonators with anomalous dispersion, for which modulation instability is believed to play a key role in initiation of the comb. Comb generation in normal dispersion microresonators has also been reported but is less well understood. Here we report a detailed investigation of few-moded, normal dispersion silicon nitride microresonators, showing that mode coupling can strongly modify the local dispersion, even changing its sign. We demonstrate a link between mode coupling and initiation of comb generation by showing experimentally, for the first time to our knowledge, pinning of one of the initial comb sidebands near a mode crossing frequency. Associated with this route to comb formation, we observe direct generation of coherent, bandwidth-limited pulses at repetition rates down to 75 GHz, without the need to first pass through a chaotic state.

Keywords

Cite

@article{arxiv.1405.6225,
  title  = {Investigation of Mode Coupling in Normal Dispersion Silicon Nitride Microresonators for Kerr Frequency Comb Generation},
  author = {Yang Liu and Yi Xuan and Xiaoxiao Xue and Pei-Hsun Wang and Steven Chen and Andrew J. Metcalf and Jian Wang and Daniel E. Leaird and Minghao Qi and Andrew M. Weiner},
  journal= {arXiv preprint arXiv:1405.6225},
  year   = {2014}
}