• Photonics Research
  • Vol. 8, Issue 10, 1566 (2020)
Yi Zhou, Yu-Xuan Ren, Jiawei Shi, and Kenneth K. Y. Wong*
Author Affiliations
  • Department of Electrical and Electronic Engineering, The University of Hong Kong, Hong Kong, China
  • show less
    DOI: 10.1364/PRJ.399998 Cite this Article Set citation alerts
    Yi Zhou, Yu-Xuan Ren, Jiawei Shi, Kenneth K. Y. Wong, "Breathing dissipative soliton explosions in a bidirectional ultrafast fiber laser," Photonics Res. 8, 1566 (2020) Copy Citation Text show less
    Schematic illustration of the fiber laser cavity and measurement setup.
    Fig. 1. Schematic illustration of the fiber laser cavity and measurement setup.
    Stable breathing soliton state. (a) Average spectra recorded by an OSA. (b) Temporal evolution. (c) RF spectrum. (d) Spectral evolution.
    Fig. 2. Stable breathing soliton state. (a) Average spectra recorded by an OSA. (b) Temporal evolution. (c) RF spectrum. (d) Spectral evolution.
    Buildup and soliton explosion of breathing soliton. Temporal evolution in (a) CW and (b) CCW directions. (c) Shot-to-shot spectral evolution. (d) Energy evolution.
    Fig. 3. Buildup and soliton explosion of breathing soliton. Temporal evolution in (a) CW and (b) CCW directions. (c) Shot-to-shot spectral evolution. (d) Energy evolution.
    Intermittent soliton explosions in breathing soliton buildup process. (a), (b) Spectral evolution of two typical intermittent breathing soliton explosions. (c), (d) Energy evolution corresponding to (a) and (b), respectively. (e), (f) Spectral evolution corresponding to dashed rectangle in (c) and (d), respectively. (g), (h) Spectral cross-correlation map corresponding to (e) and (f), respectively.
    Fig. 4. Intermittent soliton explosions in breathing soliton buildup process. (a), (b) Spectral evolution of two typical intermittent breathing soliton explosions. (c), (d) Energy evolution corresponding to (a) and (b), respectively. (e), (f) Spectral evolution corresponding to dashed rectangle in (c) and (d), respectively. (g), (h) Spectral cross-correlation map corresponding to (e) and (f), respectively.
    Transient breathing soliton pair induced by soliton explosion. (a) Temporal evolution in CW and CCW directions. (b) Shot-to-shot spectral evolution. (c) Zoom-in plot of (b). (d) Energy evolution.
    Fig. 5. Transient breathing soliton pair induced by soliton explosion. (a) Temporal evolution in CW and CCW directions. (b) Shot-to-shot spectral evolution. (c) Zoom-in plot of (b). (d) Energy evolution.
    Breathing soliton explosion maneuvered by polarization. (a) Spectral evolution. (b) Zoom-in plot of dashed rectangle in (a). (c)–(e) Example spectra at RTs of 32,000, 33,820, and 34,020.
    Fig. 6. Breathing soliton explosion maneuvered by polarization. (a) Spectral evolution. (b) Zoom-in plot of dashed rectangle in (a). (c)–(e) Example spectra at RTs of 32,000, 33,820, and 34,020.
    Intensity histogram of the breathing soliton explosion. Dashed line indicates the SWH.
    Fig. 7. Intensity histogram of the breathing soliton explosion. Dashed line indicates the SWH.
    Yi Zhou, Yu-Xuan Ren, Jiawei Shi, Kenneth K. Y. Wong, "Breathing dissipative soliton explosions in a bidirectional ultrafast fiber laser," Photonics Res. 8, 1566 (2020)
    Download Citation