• Laser & Optoelectronics Progress
  • Vol. 51, Issue 1, 11901 (2014)
Cao Wenhua*, Cai Weiwei, and Liu Chaoliang
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/lop51.011901 Cite this Article Set citation alerts
    Cao Wenhua, Cai Weiwei, Liu Chaoliang. Intra-Channel Nonlinear Effects and Their Suppression in Quasi-Linear Strongly Dispersion-Managed Transmission[J]. Laser & Optoelectronics Progress, 2014, 51(1): 11901 Copy Citation Text show less
    References

    [1] G P Agrawal. Applications of Nonlinear Fiber Optics (2nd edn.)[M]. New York: Academic Press, 2008. 7

    [2] R -J Essiambre, G Raybon, B Mikkelsen, et al.. Optical Fiber Telecommunication, Vol. 4B[M]. San Diego: Academic Press, 2002. Chap.6.

    [3] Cai Ju, Sun Jie. Comparison of two kinds of high-speed long-haul nonlinear optical transmissions systems[J]. Acta Photonica Sinica, 2010, 39(suppl): 83-87.

    [4] R -J Essiambre, B Mikkelsen, G Raybon. Intra-channel cross-phase modulation and four-wave mixing in high-speed TDM systems[J]. Electron Lett, 1999, 35(18): 1576-1577.

    [5] Cai Ju, Yang Xianglin. Intrachannel nonlinear effects in optical time division multiplexing dispersion-managed quasi-linear transmission system[J]. Acta Optica Sinica, 2005, 25(1): 93-98.

    [6] S Kumar, J C Mauro, S Raghavan, et al.. Intrachannel nonlinear penalties in dispersion-managed transmission systems[J]. IEEE J Sel Top Quantum Electron, 2002, 8(3): 626-631.

    [7] R I Killey, H J Thiele, V Mikhailov, et al.. Reduction of intrachannel nonlinear distortion in 40-Gb/s WDM transmission over standard fiber[J]. IEEE Photon Technol Lett, 2000, 12(12): 1624-1626.

    [8] A Mecozzi, C B Clausen, M Shtaif, et al.. Cancellation of timing and amplitude jitter in symmetric links using highly dispersed pulses[J]. IEEE Photon Technol Lett, 2001, 13(5): 445-447.

    [9] A G Striegler, B Schmanuss. Compensation of intrachannel effects in symmetric dispersion-managed transmission systems[J]. J Lightwave Technol, 2004, 22(8): 1877-1882.

    [10] H Wei, D V Plant. Intra-channel nonlinearity compensation with scaled translational symmetry[J]. Opt Express, 2004, 12(18): 4282-4296.

    [11] K S Cheng, J Conradi. Reduction of pulse-to-pulse interaction using alternative RZ formats in 40-Gb/s systems [J]. IEEE Photon Technol Lett, 2002, 14(1): 98-100.

    [12] X Liu, X Wei, A H Gnauck, et al.. Suppression of intrachannel four-wave-mixing-induced ghost pulses in high-speed transmissions by phase inversion between adjacent marker blocks[J]. Opt Lett, 2002, 27(13): 1177-1179.

    [13] Qin Xi, Zhang Feng, Lu Bo, et al.. Intrachannel four-wave mixing in high speed optical fiber transmission systems with different modulation for mats[J]. J Xidian University, 2007, 34(suppl): 43-46.

    [14] N Alic, Y Fainman. Data-dependent phase coding for suppression of ghost pulses in optical fibers[J]. IEEE Photon Technol Lett, 2004, 16(4): 1212-1214.

    [15] H G Batshon, I B Djordjevic, B V Vasic, et al.. An improved technique for suppression of intrachannel four-wave mixing in 40-Gb/s optical transmission systems[J]. IEEE Photon Technol Lett, 2007, 19(2): 67-69.

    [16] M Zou, M Chen, S Xie. Suppression of ghost pulses in 40 Gbps optical transmission systems with fixed-pattern phase modulation[J]. Opt Express, 2005, 13(7): 2251-2255.

    [17] S Wabnitz, K S Turitsyn. Mitigation of nonlinear and PMD impairments by bit-synchronous polarization scrambling[J]. J Lightwave Technol, 2012, 30(15): 2494-2501.

    [18] B Slater, S Boscolo, A Shafarenko, et al.. Mitigation of patterning effects at 40 Gbits/s by skewed channel pre-encoding[J]. J Optical Netw, 2007, 6(8): 984-990.

    [19] A Shafarenko, A Skidin, S K Turitsyn. Weakly-constrained codes for suppression of patterning effects in digital communications[J]. IEEE Trans Commun, 2010, 58(10): 2845-2854.

    [20] J Zweck, C R Menyuk. Reduction of intrachannel four-wave-mixing using subchannel multiplexing[J]. IEEE Photon Technol Lett, 2003, 15(2): 323-325.

    [21] Qu Linjie, Qu Xin. Long-distance optical soliton transmission with large pulse-duty-ratio and large amplifier spacing using phase conjugation and dispersion allocation[J]. Acta Optica Sinica, 1997, 17(5): 565-571.

    [22] P Kaewplung, K Kikuchi. Simultaneous cancellation of fiber loss, dispersion, and Kerr effect in ultralong-haul optical fiber transmission by midway optical phase conjugation incorporated with distributed Raman amplification[J]. J Lightwave Technol, 2007, 25(10): 3035-3050.

    [23] Jianqiang Li, Kun Xu, Guangtao Zhou, et al.. Performance evaluation for 160-Gb/s optical phase conjugation systems considering dispersion mapping and third-order dispersion[J]. Chinese Opt Lett, 2007, 5(2): 63-65.

    [24] Cao Wenhua, Wang Yong, Liu Songhao. Dispersion and nonlinearity compeansation in optical fiber communication systems by optical phase conjugation incorporated pulse prechirp[J]. Acta Optica Sinica, 2012, 32(9): 0906005.

    [25] L Zhu, G Li. Nonlinearity compensation using dispersion-folded digital backward propagation[J]. Opt Express, 2012, 20(13): 14362-14370.

    [26] S Turitsyn, M Sorokina, S Derevyanko. Dispersion-dominated nonlinear fiber-optic channel[J]. Opt Lett, 2012, 37(14): 2931-2933.

    [27] H Wei, D V Plant. Reversing intrachannel ghost-pulse generation by midspan self-phase modulation[J]. Opt Lett, 2005, 30(18): 2366-2368.

    [28] A Mecozzi, C B Clausen, M Shtaif. System impact of intra-channel nonlinear effects in highly dispersed optical pulse transmission[J]. IEEE Photon Technol Lett, 2000, 12(12): 1633-1635.

    [29] M J Ablowitz, T Hirooka. Resonant nonlinear intrachannel interactions in strongly dispersion-managed transmission systems[J]. Optics Letters, 2000, 25(24): 1750-1752.

    Cao Wenhua, Cai Weiwei, Liu Chaoliang. Intra-Channel Nonlinear Effects and Their Suppression in Quasi-Linear Strongly Dispersion-Managed Transmission[J]. Laser & Optoelectronics Progress, 2014, 51(1): 11901
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