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Volume 40 Issue 6
Sep.  2016
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Rerearch of polarization control based on bi-propagating dual-order Raman pump

  • Corresponding author: QIN Zujun, 674265337@qq.com
  • Received Date: 2015-10-23
    Accepted Date: 2015-11-12
  • In order to develop a practical all-optical polarization control tool, according to vector stimulated Raman scattering theory and random birefringence effect of optical fibers, a scheme of all-optical polarization control was proposed based on bi-propagating dual-order Raman pump. After the establishment of the theoretical model solved by rigorous numerical method, the optimal design of the polarization control scheme was completed. The results show that when signal wavelength is 1550nm, signal power is 0.1mW, pump light P1 and P2 power are 1W and 4W, and their polarization states are (0, 1, 0), fiber length is 3km, the degree of polarization of signal light could be more than 0.85, and the intensity fluctuations of signal light are less than 35%. The proposed method is effective to reduce the power of the interacting light wave, weaken the intensity noise of output optical signal and improve the degree of polarization of optical signals.
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    ZHANG X G. Progress of polarization control technologies in high speed optical fiber communications[J]. Journal of Beijing University of Posts and Telecommunications, 2011, 34(1):1-10(in Chinese).
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    URSINI L, SANTAGIUSTINA M, PALMIERI L. Raman nonlinear polarization pulling in the pump depleted regime in randomly birefringent fibers[J]. IEEE Photonics Technology Letters, 2011, 23(4):254-256.
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    MUGA N J, FERREIRA M F, PINTO A N. Polarization-dependent gain in Raman amplification based all-optical polarization control schemes[C]//Transparent Optical Networks (ICTON), 201214th International Conference on IEEE. New York, USA:IEEE, 2012:1-4.
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    GALTAROSSA A, PALMIERI L, SANTAGIUSTINA M, et al. Polarized backward Raman amplification in randomly birefringent fibers[J]. Journal of Lightwave Technology, 2006, 24(11):4055-4063.
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Rerearch of polarization control based on bi-propagating dual-order Raman pump

    Corresponding author: QIN Zujun, 674265337@qq.com
  • 1. School of Electronic Engineering and Automation, Guilin University of Electronic Technology, Guilin 541004, China

Abstract: In order to develop a practical all-optical polarization control tool, according to vector stimulated Raman scattering theory and random birefringence effect of optical fibers, a scheme of all-optical polarization control was proposed based on bi-propagating dual-order Raman pump. After the establishment of the theoretical model solved by rigorous numerical method, the optimal design of the polarization control scheme was completed. The results show that when signal wavelength is 1550nm, signal power is 0.1mW, pump light P1 and P2 power are 1W and 4W, and their polarization states are (0, 1, 0), fiber length is 3km, the degree of polarization of signal light could be more than 0.85, and the intensity fluctuations of signal light are less than 35%. The proposed method is effective to reduce the power of the interacting light wave, weaken the intensity noise of output optical signal and improve the degree of polarization of optical signals.

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