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利用掺杂光纤和分布式拉曼放大技术在157纳米带宽上进行S波段、C波段和L波段传输。

S-, C- and L-band transmission over a 157 nm bandwidth using doped fiber and distributed Raman amplification.

作者信息

Puttnam Benjamin J, Luís Ruben S, Rademacher Georg, Mendez-Astudillio Manuel, Awaji Yoshinari, Furukawa Hideaki

出版信息

Opt Express. 2022 Mar 14;30(6):10011-10018. doi: 10.1364/OE.448837.

Abstract

We investigate optical transmission of an ultra-wideband signal in a standard single mode fiber. Using a near continuous optical bandwidth exceeding 157 nm across the S-, C- and L-bands, we combine doped-fiber amplifiers covering S, C and L-bands with distributed Raman amplification to enable high-quality transmission of polarization division multiplexed (PDM)-256-quadrature-amplitude modulation (QAM) signals over a 54 km standard single-mode fiber. We receive 793 × 24.5 GBd signals from 1466.34 nm to 1623.57 nm and measure a data rate estimated from the generalized mutual information (GMI) of 256.4 Tb/s and an LDPC decoded throughput of 244.3 Tb/s. The measured data rates exceed the highest previously measured in a single mode fiber, showing the potential for S-band transmission to enhance achievable data rates in optical fibers.

摘要

我们研究了超宽带信号在标准单模光纤中的光传输。通过在S波段、C波段和L波段使用超过157 nm的近连续光带宽,我们将覆盖S波段、C波段和L波段的掺杂光纤放大器与分布式拉曼放大相结合,以实现偏振复用(PDM)-256正交幅度调制(QAM)信号在54 km标准单模光纤上的高质量传输。我们接收了从1466.34 nm到1623.57 nm的793×24.5 GBd信号,并测量了根据广义互信息(GMI)估计的数据速率为256.4 Tb/s,低密度奇偶校验(LDPC)解码吞吐量为244.3 Tb/s。测量得到的数据速率超过了此前在单模光纤中测得的最高数据速率,表明S波段传输在提高光纤可实现的数据速率方面具有潜力。

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