• Chinese Journal of Lasers
  • Vol. 51, Issue 13, 1301009 (2024)
Yiming Chen, Qingyu Cong, Lianxi Jia, Yang Qiu..., Xingyan Zhao, Shaonan Zheng, Yuan Dong, Qize Zhong and Ting Hu*|Show fewer author(s)
Author Affiliations
  • School of Microelectronics, Shanghai University, Shanghai 201800, China
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    DOI: 10.3788/CJL240429 Cite this Article Set citation alerts
    Yiming Chen, Qingyu Cong, Lianxi Jia, Yang Qiu, Xingyan Zhao, Shaonan Zheng, Yuan Dong, Qize Zhong, Ting Hu. Wavelength‑Tunable Silicon Nitride External‐Cavity Diode Laser[J]. Chinese Journal of Lasers, 2024, 51(13): 1301009 Copy Citation Text show less
    Structural diagram of external-cavity diode laser
    Fig. 1. Structural diagram of external-cavity diode laser
    External mirror. (a) Structural diagram; (b) optical micrograph
    Fig. 2. External mirror. (a) Structural diagram; (b) optical micrograph
    Operation principle of mirror. (a) k2 value of DC and mirror reflectivity versus wavelength with equivalent mirror structure shown in inset; (b) mirror reflectivity versus phase shift in MZI arm under different k2
    Fig. 3. Operation principle of mirror. (a) k2 value of DC and mirror reflectivity versus wavelength with equivalent mirror structure shown in inset; (b) mirror reflectivity versus phase shift in MZI arm under different k2
    Simulation results of vernier filter. (a) Side-mode suppression ratio versus wavelength tuning range; (b) normalized transmission spectra of MRR1, MRR2, and d-MZI; (c) normalized transmission spectrum of external-cavity mirror without d-MZI; (d) normalized transmission spectrum of external-cavity mirror
    Fig. 4. Simulation results of vernier filter. (a) Side-mode suppression ratio versus wavelength tuning range; (b) normalized transmission spectra of MRR1, MRR2, and d-MZI; (c) normalized transmission spectrum of external-cavity mirror without d-MZI; (d) normalized transmission spectrum of external-cavity mirror
    Schematic of external-cavity diode laser measurement system
    Fig. 5. Schematic of external-cavity diode laser measurement system
    Gain spectrum of RSOA with driving current of 120 mA
    Fig. 6. Gain spectrum of RSOA with driving current of 120 mA
    Basic characteristics of laser. (a) L-I curve of external-cavity diode laser; (b) laser output spectrum
    Fig. 7. Basic characteristics of laser. (a) L-I curve of external-cavity diode laser; (b) laser output spectrum
    Performance test results of laser. (a) Laser output power versus VTC; (b) laser operating wavelength versus VPS; (c) superimposed
    Fig. 8. Performance test results of laser. (a) Laser output power versus VTC; (b) laser operating wavelength versus VPS; (c) superimposed
    Laser output spectra under different VTC when VMRR1=6 V. (a) VTC=0 V; (b) VTC=30 V
    Fig. 9. Laser output spectra under different VTC when VMRR1=6 V. (a) VTC=0 V; (b) VTC=30 V
    Yiming Chen, Qingyu Cong, Lianxi Jia, Yang Qiu, Xingyan Zhao, Shaonan Zheng, Yuan Dong, Qize Zhong, Ting Hu. Wavelength‑Tunable Silicon Nitride External‐Cavity Diode Laser[J]. Chinese Journal of Lasers, 2024, 51(13): 1301009
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