4.6 Article

Characterization of spatiotemporal chaos in a Kerr optical frequency comb and in all fiber cavities

期刊

OPTICS LETTERS
卷 42, 期 6, 页码 1063-1066

出版社

OPTICAL SOC AMER
DOI: 10.1364/OL.42.001063

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资金

  1. FONDECYT [1150507]
  2. Belgian Science Policy Office Interuniversity Attraction Poles (IAP photonics@be) [P7-35]
  3. ANR Blanc OptiRoc [N12-BS04-0011]
  4. Laboratoire d'Excellence: Centre Europeen pour les Mathematiques
  5. la Physique et leurs Interactions
  6. Fonds National de la Recherche Scientifique

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Complex spatiotemporal dynamics have been a subject of recent experimental investigations in optical frequency comb microresonators and in driven fiber cavities with Kerr-type media. We show that this complex behavior has a spatiotemporal chaotic nature. We determine numerically the Lyapunov spectra, allowing us to characterize different dynamical behavior occurring in these simple devices. The Yorke-Kaplan dimension is used as an order parameter to characterize the bifurcation diagram. We identify a wide regime of parameters where the system exhibits a coexistence between the spatiotemporal chaos, the oscillatory localized structure, and the homogeneous steady state. The destabilization of an oscillatory localized state through radiation of counter-propagating fronts between the homogeneous and the spatiotemporal chaotic states is analyzed. To characterize better the spatiotemporal chaos, we estimate the front speed as a function of the pump intensity. (C) 2017 Optical Society of America

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