Towards 640 Gbit/s wavelength conversion based on nonlinear polarization rotation in a semiconductor optical amplifier

被引:0
|
作者
冯传奋 [1 ]
伍剑 [1 ]
张君毅 [1 ]
徐坤 [1 ]
林金桐 [1 ]
机构
[1] The Key Laboratory of Optical Communication and Lightwave Technologies of MOE,Beijing University of Posts and Telecommunications
关键词
all-optical wavelength conversion; nonlinear polarization rotation; semiconductor optical amplifier; ultra-fast carrier dynamics;
D O I
暂无
中图分类号
TN722 [放大器];
学科分类号
080902 ;
摘要
Taking into account ultra-fast carrier dynamics,this paper models 640 Gbit/s wavelength conversion scheme based on nonlinear polarization rotation (NPR) in a single semiconductor optical amplifier (SOA) and investigates the performance of this kind of wavelength conversion scheme in detail.In this model,two carrier temperature equations are introduced to substitute two energy density equations,which reduce the complexity of calculation in comparison with the previous model.The temporary gain and phase shift dynamics induced by ultra-short optical pulses are numerically simulated and the simulated results are qualitatively in good agreement with reported experimental results.Simulated results show that non-inverted and inverted 640 Gbit/s wavelength conversions based on NPR are achieved with clear open eye diagrams.To further investigate the performance of the non-inverted wavelength conversion scheme,the dependence of output extinction ratio (ER) on some key parameters used in simulation is illustrated.Furthermore,simulated analyses show that high performance non-inverted wavelength conversion based on NPR can be achieved by using a red-shifted filtering scheme.
引用
收藏
页码:1000 / 1007
页数:8
相关论文
共 50 条
  • [31] Polarization dependence of patterning effects in quantum well semiconductor optical amplifier-based wavelength conversion
    Qin, Cui
    Shen, Weikang
    Zhao, Jing
    Yu, Huilong
    Xu, Enming
    OPTICA APPLICATA, 2015, 45 (02) : 163 - 172
  • [32] An optical threshold function based on polarization rotation in a single semiconductor optical amplifier
    Geldenhuys, R.
    Liu, Y.
    Olmos, J. J. Vegas
    Leuschner, F. W.
    Khoe, G. D.
    Dorren, H. J. S.
    OPTICS EXPRESS, 2007, 15 (12): : 7275 - 7280
  • [33] All-optical buffer based on polarization rotation in semiconductor optical amplifier
    Key Laboratory of Luminescence and Optical Information, Institute of Optical Information Science and Technology, Beijing Jiaotong University, Beijing 100044, China
    Guangxue Xuebao, 2008, 10 (1898-1902):
  • [34] WAVELENGTH CONVERSION AT 10 GB/S USING A SEMICONDUCTOR OPTICAL AMPLIFIER
    WIESENFELD, JM
    GLANCE, B
    PERINO, JS
    GNAUCK, AH
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1993, 5 (11) : 1300 - 1303
  • [35] A Poincare approach to investigate nonlinear polarization rotation in semiconductor optical amplifiers and its Application to all-optical wavelength conversion
    Guo, L. Q.
    Connelly, M. J.
    OPTICAL TRANSMISSION, SWITCHING, AND SUBSYSTEMS V, PTS 1 AND 2, 2007, 6783
  • [36] Microwave Photonics Mixer based on Polarization Rotation in Semiconductor Optical Amplifier
    Zhou, Qi
    Fok, Mable P.
    2015 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2015,
  • [37] High speed wavelength conversion and format conversion based on semiconductor optical amplifier and optical filter
    Dong, Jian-Ji
    Zhang, Xin-Liang
    Ding, Yuan
    Shum, P.
    Huang, De-Xiu
    Zhongguo Jiguang/Chinese Journal of Lasers, 2007, 34 (07): : 940 - 944
  • [38] SEMICONDUCTOR OPTICAL AMPLIFIER BASED FREQUENCY ENCODED LOGIC GATES EXPLOITING NONLINEAR POLARIZATION ROTATION ONLY
    Mukherjee, Kousik
    JOURNAL OF CIRCUITS SYSTEMS AND COMPUTERS, 2014, 23 (09)
  • [39] Wavelength conversion based on nonlinear polarization rotation in gain transparent SOA
    Dou, Rong-she
    Yu, Chong-xiu
    Wang, Kui-ru
    Wang, Yong-jun
    Sang, Xin-zhu
    Zhang, Qi
    Yan, Bin-bin
    Optoelectronics Letters, 2012, 8 (04) : 289 - 292
  • [40] All-optical sampling using nonlinear polarization rotation in a single semiconductor optical amplifier
    Zhang, Shangjian
    Zhang, Qianshu
    Li, Heping
    Liu, Yongzhi
    Liu, Yong
    Pan Tao Ti Hsueh Pao/Chinese Journal of Semiconductors, 2008, 29 (06): : 1031 - 1035