Laser & Optoelectronics Progress, Volume. 58, Issue 9, 0913001(2021)

Wide Optical Frequency Comb System Based on Single Intensity Modulator

Junping Gao1,2, Mengmeng Zhao1,2, Jia Lu1,2、*, Jianfei Liu1,2, and Jingfei He1,2
Author Affiliations
  • 1School of Electronics and Information Engineering, Hebei University of Technology, Tianjin 300401, China
  • 2Tianjin Key Laboratory of Electronic Materials & Devices, Tianjin 300401, China
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    This paper proposes a scheme which uses a single Mach-Zehnder modulator (MZM) to generate a flat and wide optical comb based on the double-sideband modulation method. The frequency difference between two lasers directly determines the spectral width and quality of this comb after double-sideband modulation. Through the theoretical analysis of the standard deviation between the sidebands of different orders under different modulation coefficients and the Bessel value of each order sideband, we find sidebands above the fifth order have a negligible effect on the wide comb. The lower-power fifth-order sidebands are superimposed on the sidebands of different orders, so that the powers of the sidebands of different orders can be compensated or cancelled, thereby reducing the influence of the higher-order sidebands on the optical frequency comb and improving the flatness. The flatness of the wide optical comb obtained by simulation reaches 3.7 dB, and the effective spectral width is 700 GHz. After the non-return to zero data with transmission rate of 5 Gbit·s-1 is modulated on this optical comb and transmitted through an optical fiber, the eye diagram is still clearly visible, and the power penalty is less than 1.8 dB at the bit error rate level of 10-9. Such an optical comb can transmit more data information in optical communications, realize high-speed data transmission and maintain the flatness of the optical comb with good stability and low cost.

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    Junping Gao, Mengmeng Zhao, Jia Lu, Jianfei Liu, Jingfei He. Wide Optical Frequency Comb System Based on Single Intensity Modulator[J]. Laser & Optoelectronics Progress, 2021, 58(9): 0913001

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    Paper Information

    Category: Integrated Optics

    Received: Aug. 3, 2020

    Accepted: Sep. 14, 2020

    Published Online: May. 12, 2021

    The Author Email: Lu Jia (lujia8299@163.com)

    DOI:10.3788/LOP202158.0913001

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