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Intensity noise reduction in quantum dot comb laser by lower external carrier fluctuations

  • Wenlu Wang
  • , Shihao Ding
  • , Zihao Wang
  • , Feng He
  • , Shiyuan Zhao
  • , Ting Wang
  • , Jianjun Zhang
  • , Xiaochuan Xu
  • , Yong Yao
  • , Heming Huang
  • , Frédéric Grillot
  • , Jianan Duan
  • Harbin Institute of Technology Shenzhen
  • Institut Polytechnique de Paris
  • Shenzhen Technology University
  • Institute of Physics Chinese Academy of Sciences
  • University of Chinese Academy of Sciences
  • Songshan Lake Materials Laboratory
  • University of New Mexico

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

This work investigates the impact of carrier noise induced by an external current source on the linewidth enhancement factor (LEF) and relative intensity noise (RIN) of a 100 GHz quantum dot fourth-order colliding-pulse mode-locked laser (MLL), driven by a normal pump with Gaussian-distributed carrier sequences and a quiet pump with sub-Poissoniandistributed carrier sequences. The results indicate that under a normal pump, the LEFs are approximately zero for reverse saturable absorber (SA) bias voltages ranging from 0 to 2.5 V, and the laser achieves a RIN as low as -156 dB/Hz. When using a quiet pump, both the LEF and RIN are reduced across all SA bias conditions, particularly at low reverse SA bias voltages. Specifically, the LEF decreases by up to 0.58 at 0 V, and the average RIN spectrum is reduced by more than 3 dB at the same voltage. This work provides a straightforward approach for the development and optimization of multi-channel light sources for dense wavelength division multiplexing (DWDM) technologies with low optical noise.

langue originaleAnglais
Pages (de - à)5007-5010
Nombre de pages4
journalOptics Letters
Volume49
Numéro de publication17
Les DOIs
étatPublié - 1 sept. 2024

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