Sato Kozo, Kan Takashi, Yoshida Masato, Kasai Keisuke, Hirooka Toshihiko, Nakazawa Masataka
Opt Express. 2021 Mar 29;29(7):10676-10687. doi: 10.1364/OE.418891.
We describe experimental and numerical results regarding the influence of chromatic dispersion in optical fibers on guided acoustic-wave Brillouin scattering (GAWBS) phase noise compensation with a pilot tone (PT). We compared the compensation performance for GAWBS phase noise generated in an ultra-large-area fiber (ULAF) where DULAF = 21 ps/nm/km with that in a dispersion-shifted fiber (DSF) where DDSF = -1.3 ps/nm/km and found that the performance depends strongly on chromatic dispersion. The numerical analysis shows that the group delay between the signal and PT caused by chromatic dispersion reduces the GAWBS noise correlation between them, which degrades the compensation performance for GAWBS phase noise. It is clarified that a condition for effective GAWBS compensation is that the group delay between the signal and PT should be less than half the period of the GAWBS phase noise component.
我们描述了关于光纤中色散对利用导频音(PT)进行的导声波布里渊散射(GAWBS)相位噪声补偿影响的实验和数值结果。我们比较了在超大面积光纤(ULAF,其中DULAF = 21 ps/nm/km)中产生的GAWBS相位噪声与在色散位移光纤(DSF,其中DDSF = -1.3 ps/nm/km)中的补偿性能,发现该性能强烈依赖于色散。数值分析表明,色散引起的信号与PT之间的群时延降低了它们之间的GAWBS噪声相关性,从而降低了GAWBS相位噪声的补偿性能。结果表明,有效进行GAWBS补偿的条件是信号与PT之间的群时延应小于GAWBS相位噪声分量周期的一半。