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采用增益开关梳状光源的灵活太比特/秒奈奎斯特波分复用超通道

Flexible terabit/s Nyquist-WDM super-channels using a gain-switched comb source.

作者信息

Pfeifle Joerg, Vujicic Vidak, Watts Regan T, Schindler Philipp C, Weimann Claudius, Zhou Rui, Freude Wolfgang, Barry Liam P, Koos Christian

出版信息

Opt Express. 2015 Jan 26;23(2):724-38. doi: 10.1364/OE.23.000724.

Abstract

Terabit/s super-channels are likely to become the standard for next-generation optical networks and optical interconnects. A particularly promising approach exploits optical frequency combs for super-channel generation. We show that injection locking of a gain-switched laser diode can be used to generate frequency combs that are particularly well suited for terabit/s super-channel transmission. This approach stands out due to its extraordinary stability and flexibility in tuning both center wavelength and line spacing. We perform a series of transmission experiments using different comb line spacings and modulation formats. Using 9 comb lines and 16QAM signaling, an aggregate line rate (net data rate) of 1.296 Tbit/s (1.109 Tbit/s) is achieved for transmission over 150 km of standard single mode fiber (SSMF) using a spectral bandwidth of 166.5 GHz, which corresponds to a (net) spectral efficiency of 7.8 bit/s/Hz (6.7 bit/s/Hz). The line rate (net data rate) can be boosted to 2.112 Tbit/s (1.867 Tbit/s) for transmission over 300 km of SSMF by using a bandwidth of 300 GHz and QPSK modulation on the weaker carriers. For the reported net data rates and spectral efficiencies, we assume a variable overhead of either 7% or 20% for forward- error correction depending on the individual sub-channel quality after fiber transmission.

摘要

太比特每秒(Tb/s)的超通道很可能会成为下一代光网络和光互连的标准。一种特别有前景的方法是利用光学频率梳来生成超通道。我们表明,增益开关激光二极管的注入锁定可用于生成特别适合太比特每秒超通道传输的频率梳。这种方法因其在调谐中心波长和线间距方面具有非凡的稳定性和灵活性而脱颖而出。我们使用不同的梳状线间距和调制格式进行了一系列传输实验。使用9条梳状线和16QAM信号调制,在150公里标准单模光纤(SSMF)上传输时,利用166.5吉赫兹的光谱带宽实现了1.296太比特每秒(净数据速率为1.109太比特每秒)的聚合线速率,这对应于7.8比特每秒每赫兹(6.7比特每秒每赫兹)的(净)光谱效率。通过在较弱载波上使用300吉赫兹带宽和QPSK调制,在300公里的SSMF上传输时,线速率(净数据速率)可提高到2.112太比特每秒(1.867太比特每秒)。对于所报道的净数据速率和光谱效率,我们假设根据光纤传输后各个子通道的质量,前向纠错的可变开销为7%或20%。

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