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Performance comparison between sampling methods using DOP as feedback signal for higher-order PMD compensator

Performance comparison between sampling methods using DOP as feedback signal for higher-order PMD compensator
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摘要 We numerically analyzed the performance of the two polarization-mode dispersion (PMD) compensation methods of the single degree of polarization (DOP) sampling and DOP ellipsoid sampling methods. The numerical results show that the single DOP sampling method can generate the maximum DOP, and may result in a small overall differential group delay (DGD) or the principal state of polarization (PSP) launching. By the PSP launching, just the first-order PMD is compensated while second-order PMD not. When the DOP ellipsoid sampling method is used the performance is evidently better, because the effect of high-order PMD on PMD compensation is reduced. We numerically analyzed the performance of the two polarization-mode dispersion (PMD) compensation methods of the single degree of polarization (DOP) sampling and DOP ellipsoid sampling methods. The numerical results show that the single DOP sampling method can generate the maximum DOP, and may result in a small overall differential group delay (DGD) or the principal state of polarization (PSP) launching. By the PSP launching, just the first-order PMD is compensated while second-order PMD not. When the DOP ellipsoid sampling method is used the performance is evidently better, because the effect of high-order PMD on PMD compensation is reduced.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2007年第8期445-448,共4页 中国光学快报(英文版)
基金 This work was supported by the Hunan Province Education Department Science and Research Project under Grant No.06C794.
关键词 FEEDBACK Polarization mode dispersion Feedback Polarization mode dispersion
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