Acta Optica Sinica, Volume. 44, Issue 7, 0714001(2024)

All-Fiber Actively Mode-Locked Laser Based on Graphene

Youpeng Su1,2, Jianhua Chang1,2,3、*, Tianyi Lu1,2, Zhiyuan Cui1,2, Qian Tu1,2, and Yunhan Zhu1,2
Author Affiliations
  • 1TianChang Research Institute, Nanjing University of Information Science & Technology, Chuzhou 239300, Anhui , China
  • 2School of Electronics & Information Engineering, Nanjing University of Information Science and Technology, Nanjing 210044, Jiangsu , China
  • 3Collaborative Innovation Center of Atmospheric Environment and Equipment Technology, Nanjing University of Information Science and Technology, Nanjing 210044, Jiangsu , China
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    Figures & Tables(8)
    GCD device structure and graphene characterization. (a) Schematic diagram of GCD device; (b) side view of GCD device; (c) graphene Raman spectrum; (d) scanning electron microscope (SEM) image of graphene
    Actively mode-locked laser system based on GCD devices
    Modulation principle and transmission efficiency of graphene modulator. (a) Relationship between absorption of graphene and Fermi level; (b) principle diagram of evanescent wave coupling effect; (c) optical transmission characteristics inside corroded fiber covered with graphene under bias voltages of 5 V (as shown in the figure above) and 0 V (as shown in the figure below); (d) relationship between optical transmission efficiency and voltage amplitude at 80 mW
    Output power of fiber laser. (a) Relationship between average output power and pump power; (b) variations of average output power and insertion loss with voltage
    Schematic diagrams of pulse sequence under different demodulation signals at 80 mW pump power. (a) Pulse sequence diagrams under 1 V and 3 V AC voltage signals; (b) mode locked pulse sequences under continuous wave and 5 V AC signal; (c) synchronous diagram of driving voltage signal and pulse sequence; (d) autocorrelation curves
    Output characteristics of fiber laser. (a) Spectrogram; (b) frequency spectrum
    Schematic diagram of harmonic mode-locked signal under 80 mW pump power. (a) Second harmonic mode-locked pulse sequence diagram; (b) autocorrelation curve chart; (c) spectral chart; (d) frequency spectrum
    • Table 1. Comparison of parameters of mode-locked lasers based on various modulation techniques

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      Table 1. Comparison of parameters of mode-locked lasers based on various modulation techniques

      Mode-locking technologyPumppower /mWCenterwavelength /nmRepetitivefrequency /MHzPulsewidth /psReference
      Graphene device80155812.2298Our work
      Piezoelectric transducer and Bi2Te3 topological insulator50.31559.45.5266Ref. [28
      LiNbO3 Mach-Zehnder modulator324154712.06200Ref. [29
      Acousto-optic modulator1301534.451.538330Ref. [30
      α-BaTeMo2O9-based acoustooptical modulator45015303.1911320Ref. [31
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    Youpeng Su, Jianhua Chang, Tianyi Lu, Zhiyuan Cui, Qian Tu, Yunhan Zhu. All-Fiber Actively Mode-Locked Laser Based on Graphene[J]. Acta Optica Sinica, 2024, 44(7): 0714001

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    Paper Information

    Category: Lasers and Laser Optics

    Received: Dec. 21, 2023

    Accepted: Jan. 23, 2024

    Published Online: Apr. 11, 2024

    The Author Email: Chang Jianhua (jianhuachang@nuist.edu.cn)

    DOI:10.3788/AOS231958

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