• Journal of Infrared and Millimeter Waves
  • Vol. 42, Issue 4, 457 (2023)
Hai-Xia TONG1、2, Yan-Jing WANG2, Ning JIANG3, Si-Cong TIAN2, Cun-Zhu TONG2、3、*, Zhi-Peng WEI1、**, and Li-Jun WANG2
Author Affiliations
  • 1State Key Laboratory of High Power Semiconductor Laser,Changchun University of Science and Technology,Changchun 130022,China
  • 2State Key Laboratory of Luminescence and Applications,Changchun Institute of Optics,Fine Mechanics and Physics Chinese Academy of Sciences,Changchun 130033,China
  • 3Jlight Semiconductor Technology Co.,Ltd,Changchun 130033,China
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    DOI: 10.11972/j.issn.1001-9014.2023.04.005 Cite this Article
    Hai-Xia TONG, Yan-Jing WANG, Ning JIANG, Si-Cong TIAN, Cun-Zhu TONG, Zhi-Peng WEI, Li-Jun WANG. Design and fabrication of 40 Gbit/s error-free high-speed 850 nm VCSEL using NRZ modulation[J]. Journal of Infrared and Millimeter Waves, 2023, 42(4): 457 Copy Citation Text show less
    Refractive index profile and simulated optical field intensity inside the designed 850 nm VCSEL cavity
    Fig. 1. Refractive index profile and simulated optical field intensity inside the designed 850 nm VCSEL cavity
    (a)SEM image of the cross section of the device after wet oxidation, the dark lines are the oxidized high-Al-composition layers,(b)top-view of fabricated VCSEL with ground-signal-ground(GSG)probe pads
    Fig. 2. (a)SEM image of the cross section of the device after wet oxidation, the dark lines are the oxidized high-Al-composition layers,(b)top-view of fabricated VCSEL with ground-signal-ground(GSG)probe pads
    (a)L-I-V curves of VCSEL with 5 μm oxide aperture at room temperature,(b)lasing spectra at different bias currents
    Fig. 3. (a)L-I-V curves of VCSEL with 5 μm oxide aperture at room temperature,(b)lasing spectra at different bias currents
    (a)Small signal modulation response S21 curve of 850 nm VCSEL at different current values at room temperature,(b)square relation of VCSEL relation oscillation frequency and -3 dB modulation bandwidth to current above threshold
    Fig. 4. (a)Small signal modulation response S21 curve of 850 nm VCSEL at different current values at room temperature,(b)square relation of VCSEL relation oscillation frequency and -3 dB modulation bandwidth to current above threshold
    (a)The bit error rate tests of device in PRBS7 and PRBS31 codes at the transmission distance of 1 m fiber, the figure on the right: optical eye diagram in PRBS7 and PRBS31 codes at 50 Gbit/s,(b)the bit error rate tests of device in PRBS7 and PRBS31 codes at the transmission distance of 100 m fiber, the figure on the right: optical eye diagram in PRBS7 and PRBS31 codes at 40 Gbit/s
    Fig. 5. (a)The bit error rate tests of device in PRBS7 and PRBS31 codes at the transmission distance of 1 m fiber, the figure on the right: optical eye diagram in PRBS7 and PRBS31 codes at 50 Gbit/s,(b)the bit error rate tests of device in PRBS7 and PRBS31 codes at the transmission distance of 100 m fiber, the figure on the right: optical eye diagram in PRBS7 and PRBS31 codes at 40 Gbit/s
    Bath curves of the device tested by NRZ modulation using PRBS7 code,(a)bath curves at the transmission distance of 1 m fiber of 40 Gbit/s data transfer rate,(b)bath curves at the transmission distance of 100 m fiber of 40 Gbit/s data transfer rate
    Fig. 6. Bath curves of the device tested by NRZ modulation using PRBS7 code,(a)bath curves at the transmission distance of 1 m fiber of 40 Gbit/s data transfer rate,(b)bath curves at the transmission distance of 100 m fiber of 40 Gbit/s data transfer rate
    Hai-Xia TONG, Yan-Jing WANG, Ning JIANG, Si-Cong TIAN, Cun-Zhu TONG, Zhi-Peng WEI, Li-Jun WANG. Design and fabrication of 40 Gbit/s error-free high-speed 850 nm VCSEL using NRZ modulation[J]. Journal of Infrared and Millimeter Waves, 2023, 42(4): 457
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