• Chinese Journal of Lasers
  • Vol. 47, Issue 12, 1206004 (2020)
Liu Qiang1, Jing Zhenguo1, Li Ang2, Huang Zhiyuan2, and Peng Wei1
Author Affiliations
  • 1School of Physics, Dalian University of Technology, Dalian, Liaoning 116024, China
  • 2School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian, Liaoning 116024, China
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    DOI: 10.3788/CJL202047.1206004 Cite this Article Set citation alerts
    Liu Qiang, Jing Zhenguo, Li Ang, Huang Zhiyuan, Peng Wei. Quasi-Continuous Tuning Characteristics of Modulated Grating Y-Branch Lasers[J]. Chinese Journal of Lasers, 2020, 47(12): 1206004 Copy Citation Text show less
    Structure and tuning principle of MG-Y tunable laser. (a) Diagram of structure; (b) vernier tuning principle
    Fig. 1. Structure and tuning principle of MG-Y tunable laser. (a) Diagram of structure; (b) vernier tuning principle
    Automated test system of MG-Y tunable laser
    Fig. 2. Automated test system of MG-Y tunable laser
    Flow chart of fast automated test scheme of MG-Y laser
    Fig. 3. Flow chart of fast automated test scheme of MG-Y laser
    Tuning paths of IRR and ILR covering wavelength range of 40 nm. (a) Relationship among output wavelength, IRR, and ILR; (b) current tuning paths of IRR and ILR with 0.4 nm wavelength interval
    Fig. 4. Tuning paths of IRR and ILR covering wavelength range of 40 nm. (a) Relationship among output wavelength, IRR, and ILR; (b) current tuning paths of IRR and ILR with 0.4 nm wavelength interval
    Spline interpolation of path 1. (a) Generating IRR array through wavelength interpolation; (b) generating ILR array through IRR interpolation
    Fig. 5. Spline interpolation of path 1. (a) Generating IRR array through wavelength interpolation; (b) generating ILR array through IRR interpolation
    Target wavelength retrieval based on spline interpolation. (a) Tuning characteristics of current in phase region; (b) deduplication and stitching of linear tuning sections; (c) target wavelength retrieval by spline interpolation; (d) current tuning curves of path 1 with 8 pm wavelength interval
    Fig. 6. Target wavelength retrieval based on spline interpolation. (a) Tuning characteristics of current in phase region; (b) deduplication and stitching of linear tuning sections; (c) target wavelength retrieval by spline interpolation; (d) current tuning curves of path 1 with 8 pm wavelength interval
    Calibration of output power of laser. (a) Output power curve of laser when ISOA is fixed at 100.76 mA; (b) tuning characteristic of ISOA; (c) calibrated output power; (d) full C-band current tuning curves
    Fig. 7. Calibration of output power of laser. (a) Output power curve of laser when ISOA is fixed at 100.76 mA; (b) tuning characteristic of ISOA; (c) calibrated output power; (d) full C-band current tuning curves
    Diagram of fiber-optic EFPI demodulation system based on MG-Y laser
    Fig. 8. Diagram of fiber-optic EFPI demodulation system based on MG-Y laser
    Demodulation results of optical fiber EFPI. (a) Interference spectrum; (b) demodulated cavity length
    Fig. 9. Demodulation results of optical fiber EFPI. (a) Interference spectrum; (b) demodulated cavity length
    Liu Qiang, Jing Zhenguo, Li Ang, Huang Zhiyuan, Peng Wei. Quasi-Continuous Tuning Characteristics of Modulated Grating Y-Branch Lasers[J]. Chinese Journal of Lasers, 2020, 47(12): 1206004
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