• Acta Physica Sinica
  • Vol. 69, Issue 8, 084202-1 (2020)
Feng Zhou, Yu Cai, De-Feng Zou, Ding-Tong Hu, Ya-Jing Zhang, You-Jian Song*, and Ming-Lie Hu
Author Affiliations
  • Key Laboratory of Opto-electronic Information Technology, Ministry of Education, Ultrafast Laser Laboratory, School of Precision Instrument and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China
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    DOI: 10.7498/aps.69.20191989 Cite this Article
    Feng Zhou, Yu Cai, De-Feng Zou, Ding-Tong Hu, Ya-Jing Zhang, You-Jian Song, Ming-Lie Hu. Internal dynamic detection of soliton molecules in Ti:sapphire femtosecond laser[J]. Acta Physica Sinica, 2020, 69(8): 084202-1 Copy Citation Text show less
    TS-DFT experimental setup based on Ti: sapphire laser (OC, output coupler; P, prim; CM, chirped mirror; L, lens; Ti:S, Ti:sapphire; M, mirror; FC, fiber coupler; SMF, single-mode fiber; PD, photodetecter; OSC, high-speed oscilloscope).
    Fig. 1. TS-DFT experimental setup based on Ti: sapphire laser (OC, output coupler; P, prim; CM, chirped mirror; L, lens; Ti:S, Ti:sapphire; M, mirror; FC, fiber coupler; SMF, single-mode fiber; PD, photodetecter; OSC, high-speed oscilloscope).
    Experimental real-time observation soliton molecules with a separation of 105 fs: (a) Interferograms of a soliton bound state and its single-shot spectrum; (b) the field autocorrelations of the momentary bound state; (c) relative phase evolution diagram; (d) optical spectrum measured by OSA and DFT.
    Fig. 2. Experimental real-time observation soliton molecules with a separation of 105 fs: (a) Interferograms of a soliton bound state and its single-shot spectrum; (b) the field autocorrelations of the momentary bound state; (c) relative phase evolution diagram; (d) optical spectrum measured by OSA and DFT.
    Experimental real-time observation stable soliton molecules with a separate of 180 fs: (a) Interferograms of a soliton bound state; (b) the field autocorrelations of the momentary bound state; (c) relative phase evolution diagram; (d) optical spectra measured by OSA and DFT.
    Fig. 3. Experimental real-time observation stable soliton molecules with a separate of 180 fs: (a) Interferograms of a soliton bound state; (b) the field autocorrelations of the momentary bound state; (c) relative phase evolution diagram; (d) optical spectra measured by OSA and DFT.
    Experimental real-time observation soliton molecules with a sliding phase: (a) Interferograms of a soliton bound state; (b) the field autocorrelations of the momentary bound state; (c) relative phase evolution diagram; (d) optical spectra measured by OSA and DFT.
    Fig. 4. Experimental real-time observation soliton molecules with a sliding phase: (a) Interferograms of a soliton bound state; (b) the field autocorrelations of the momentary bound state; (c) relative phase evolution diagram; (d) optical spectra measured by OSA and DFT.
    Dynamics of the SM mapped into the interaction plane.
    Fig. 5. Dynamics of the SM mapped into the interaction plane.
    Feng Zhou, Yu Cai, De-Feng Zou, Ding-Tong Hu, Ya-Jing Zhang, You-Jian Song, Ming-Lie Hu. Internal dynamic detection of soliton molecules in Ti:sapphire femtosecond laser[J]. Acta Physica Sinica, 2020, 69(8): 084202-1
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