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首页> 外文期刊>Journal of Lightwave Technology >Examination of Potential Terrestrial System Effects From Raman Pumps Below Cable Cutoff in G.654.E Fibers
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Examination of Potential Terrestrial System Effects From Raman Pumps Below Cable Cutoff in G.654.E Fibers

机译:检查G.654.​​E光纤中低于电缆截断的拉曼泵对地面系统的潜在影响

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ITU G.654.E was recently approved as a new optical fiber standard for terrestrial systems. While G.654-compliant fibers have been used extensively in undersea submarine networks for some time, the G.654.E standard is optimized for terrestrial systems and, in particular, it enables the use of large effective area fibers to extend the reach of new high data rate signals with multilevel modulation formats. The new G.654.E fiber standard increases the maximum cable cutoff wavelength specification to the lower edge of the C-band, 1530 nm. We analyze potential signal impairments that may arise from Raman amplification with pump wavelengths below cable cutoff. We study the case where Raman pump relative intensity noise (RIN) is caused only by Raman pump multipath interference and show that its effect is negligible compared to the contribution from inherent Raman pump RIN that is constant along a fiber propagation length. We find negligible effects are expected even under worst-case condition.
机译:ITU G.654.​​E最近被批准为地面系统的新光纤标准。尽管符合G.654的光纤已在海底海底网络中广泛使用了一段时间,但G.654.​​E标准已针对地面系统进行了优化,尤其是,它允许使用大有效面积光纤来扩展海底探测范围。具有多级调制格式的新型高数据速率信号。新的G.654.​​E光纤标准将最大电缆截止波长规格提高到C波段的下边缘1530 nm。我们分析了当泵浦波长低于电缆截止波长时,拉曼放大可能引起的潜在信号损伤。我们研究了仅由拉曼泵多径干扰引起的拉曼泵相对强度噪声(RIN)的情况,并表明与固有拉曼泵RIN沿光纤传播长度恒定的贡献相比,其影响微不足道。我们发现即使在最坏的情况下,预期的影响也可以忽略不计。

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