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Wide-range tunability, thermal locking, and mode-crossing effects in Kerr optical frequency combs

  • Guoping Lin*
  • , Khaldoun Saleh
  • , Rémi Henriet
  • , Souleymane Diallo
  • , Romain Martinenghi
  • , Aurélien Coillet
  • , Yanne K. Chembo
  • *Corresponding author for this work
  • University de Franche-Comté
  • National Institute of Standards and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

We theoretically and experimentally investigate some effects related to the Kerr optical frequency comb generation, using a millimeter-size magnesium fluoride ultrahigh quality disk resonator. We show that the Kerr comb tunability can be extremely wide in the Turing pattern (or primary comb) regime, with an intermodal frequency that can be tuned from 4 to 229 multiple free spectral ranges (corresponding to a frequency spacing ranging from 24 GHz to 1.35 THz). We also discuss the role played by thermal locking while pumping the resonator, as well as the effect of modal crossing when broadband combs are generated.

Original languageEnglish
Article number122602
JournalOptical Engineering
Volume53
Issue number12
DOIs
StatePublished - Dec 2014
Externally publishedYes

Keywords

  • Kerr combs
  • crystalline photonics
  • ultrahigh quality resonators
  • whispering gallery mode resonators

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