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Compensation for first-order polarization-mode dispersion by using a novel tunable compensator

机译:使用新型可调补偿器补偿一阶偏振模色散

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Polarization-related impairments have become a critical issue for high-data-rate optical systems, particularly when considering polarization-mode dispersion (PMD). Consequently, compensation of PMD, especially for the first-order PMD is necessary to maintain adequate performance in long-haul systems at a high bit rate of 10 Gb/s or beyond. In this paper, we successfully demonstrated automatic and tunable compensation for first-order polarization-mode dispersion. Furthermore, we reported the statistical assessment of this tunable compensator at 10 Gbit/s. Experimental results, including bit error rate measurements, are successfully compared with theory, therefore demonstrating the compensator efficiency at 10 Gbit/s. The first-order PMD was max 274 ps before PMD compensation, and it was lower than 7ps after PMD compensation.
机译:偏振相关的损伤已成为高数据速率光学系统的关键问题,尤其是考虑偏振模色散(PMD)时。因此,为了在长距离系统中以10 Gb / s或更高的高比特率保持足够的性能,必须对PMD进行补偿,尤其是对一阶PMD。在本文中,我们成功地演示了针对一阶偏振模色散的自动和可调补偿。此外,我们报告了这种可调补偿器在10 Gbit / s的统计评估。实验结果(包括误码率测量)已成功与理论进行了比较,因此证明了10 Gbit / s的补偿器效率。一阶PMD在PMD补偿之前最大为274 ps,低于PMD补偿之后的7ps。

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