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Tolerance to optical feedback of 10-Gb/s quantum-dash-based lasers emitting at 1.51 μm

  • Sheherazade Azouigui
  • , Beatrice Dagens
  • , Francois Lelarge
  • , Jean Guy Provost
  • , Alain Accard
  • , Frederic Grillot
  • , Anthony Martinez
  • , Qin Zou
  • , Abderrahim Ramdane
  • Centre de Nanosciences et de Nanotechnologies
  • CNRS SAMOVAR UMR 5157
  • Alcatel-Thales III-V Laboratory
  • Institut FOTON-UMR6082

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Tolerance to optical feedback is investigated on quantum-dash-based lasers emitting at 1.51 μm. The onset of coherence collapse regime is experimentally determined using three criteria: optical spectrum broadening, relative intensity noise increase, and bit-error-rate degradation. Measurements were first performed in static operation at different current values, using the first and second criteria. The onset of coherence collapse was found to increase from ∼ 41 to - 27 dB with the bias current. Then tolerance to optical feedback was assessed in dynamic operation at 10 Gb/s, using the third criterion. In spite of a relatively high linewidth enhancement factor (α H ∼ 4.5), a - 32-dB onset of coherence collapse corresponding to - 24-dB maximum optical return loss tolerance was achieved at 10-Gb/s rate.

langue originaleAnglais
Pages (de - à)1181-1183
Nombre de pages3
journalIEEE Photonics Technology Letters
Volume19
Numéro de publication15
Les DOIs
étatPublié - 1 août 2007
Modification externeOui

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