English

Frequency comb generation via cascaded second-order nonlinearities in microresonators

Optics 2020-05-27 v2

Abstract

Optical frequency combs are revolutionising modern time and frequency metrology. In the past years, their range of applications has increased substantially, driven by their miniaturisation through microresonator-based solutions. The combs in such devices are typically generated using the third-order χ(3)\chi^{(3)}-nonlinearity of the resonator material. An alternative approach is making use of second-order χ(2)\chi^{(2)}-nonlinearities. While the idea of generating combs this way has been around for almost two decades, so far only few demonstrations are known, based either on bulky bow-tie cavities or on relatively low-QQ waveguide resonators. Here, we present the first such comb that is based on a millimetre-sized microresonator made of lithium niobate, that allows for cascaded second-order nonlinearities. This proof-of-concept device comes already with pump thresholds as small as 2 mW, generating repetition-rate-locked combs around 1064 nm and 532 nm. From the nonlinear dynamics point of view, the observed combs correspond to the Turing roll patterns.

Keywords

Cite

@article{arxiv.1912.00945,
  title  = {Frequency comb generation via cascaded second-order nonlinearities in microresonators},
  author = {Jan Szabados and Danila N. Puzyrev and Yannick Minet and Luis Reis and Karsten Buse and Alberto Villois and Dmitry V. Skryabin and Ingo Breunig},
  journal= {arXiv preprint arXiv:1912.00945},
  year   = {2020}
}

Comments

Article with supplementary information, 12 pages, 8 figures. V2 contains few missing umlauts

R2 v1 2026-06-23T12:33:24.470Z