• Acta Physica Sinica
  • Vol. 68, Issue 11, 114210-1 (2019)
Jian Sun1, Tang-Jun Li1, Mu-Guang Wang1、*, Nan Jia2, Yan-Chao Shi3, Chun-Can Wang1, and Su-Chun Feng1
Author Affiliations
  • 1Key Laboratory of All Optical Network and Advanced Telecommunication Network, Ministry of Education, Institute of Lightwave Technology, Beijing Jiaotong University, Beijing 100044, China
  • 2College of Physics and Electrical Engineering, Anyang Normal University, Anyang 455000, China
  • 3Beijing Institute of Astronautical System Engineering, Beijing 100076, China
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    DOI: 10.7498/aps.68.20190111 Cite this Article
    Jian Sun, Tang-Jun Li, Mu-Guang Wang, Nan Jia, Yan-Chao Shi, Chun-Can Wang, Su-Chun Feng. Evolution of non-frequency shift components of pulse tail in normal dispersion region of highly nonlinear fiber[J]. Acta Physica Sinica, 2019, 68(11): 114210-1 Copy Citation Text show less
    Spectrograms at 200, 400 and 600 m of HNLF with different input peak powers when the noise is ignored.忽略噪声时输入脉冲不同峰值功率条件下, 光脉冲在HNLF 200, 400和600 m处的时谱图
    Fig. 1. Spectrograms at 200, 400 and 600 m of HNLF with different input peak powers when the noise is ignored.忽略噪声时输入脉冲不同峰值功率条件下, 光脉冲在HNLF 200, 400和600 m处的时谱图
    Spectrograms at 200, 400 m and 600 m of HNLF without noise (row 1) and with noise (row 2), when the peak power and pulse width are 30 W and 1.5 ps.脉冲峰值功率和脉宽为30 W 和1.5 ps 时, 无噪声(第一行)和有噪声(第二行)情况下在光纤200, 400和600 m处的时谱图
    Fig. 2. Spectrograms at 200, 400 m and 600 m of HNLF without noise (row 1) and with noise (row 2), when the peak power and pulse width are 30 W and 1.5 ps.脉冲峰值功率和脉宽为30 W 和1.5 ps 时, 无噪声(第一行)和有噪声(第二行)情况下在光纤200, 400和600 m处的时谱图
    Spectrograms with different third-order dispersion coefficients and with/without SRS at 600 m of HNLF when peak power is 50 W.脉冲峰值功率50 W时不同光纤参数下光脉冲在HNLF 600 m处的时谱图
    Fig. 3. Spectrograms with different third-order dispersion coefficients and with/without SRS at 600 m of HNLF when peak power is 50 W.脉冲峰值功率50 W时不同光纤参数下光脉冲在HNLF 600 m处的时谱图
    Spectrograms of CW and pulse light propagating in HNLF.脉冲和连续光一同进入HNFL时不同位置的时谱图
    Fig. 4. Spectrograms of CW and pulse light propagating in HNLF.脉冲和连续光一同进入HNFL时不同位置的时谱图
    Spectrograms at the length of 0 m, 100 m, 400 m, 600 m of HNLF with different C.不同初始啁啾脉冲在HNLF中0, 100, 400和600 m处的时谱图
    Fig. 5. Spectrograms at the length of 0 m, 100 m, 400 m, 600 m of HNLF with different C. 不同初始啁啾脉冲在HNLF中0, 100, 400和600 m处的时谱图
    Waveforms and spectra with different C, at l00 and 600 m of HNLF.不同初始啁啾脉冲在HNLF中100, 600 m处的波形和光谱
    Fig. 6. Waveforms and spectra with different C, at l00 and 600 m of HNLF. 不同初始啁啾脉冲在HNLF中100, 600 m处的波形和光谱
    Jian Sun, Tang-Jun Li, Mu-Guang Wang, Nan Jia, Yan-Chao Shi, Chun-Can Wang, Su-Chun Feng. Evolution of non-frequency shift components of pulse tail in normal dispersion region of highly nonlinear fiber[J]. Acta Physica Sinica, 2019, 68(11): 114210-1
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