Soliton WDM transmission

B. Nyman, S.G. Evangelizes
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Abstract

The large gain bandwidth of erbium doped fiber amplifiers has stimulated interest in WDM systems with many channels. For trans-oceanic and other such long-haul systems, the number of channels is limited by the accumulated gain bandwidth, which tends to decrease rapidly with distance. For NRZ systems, additional limitations arise from four wave mixing among the channels. Soliton transmission reduces these problems and allows for greatly reduced channel spacing. In particular, in recent experiment the adjacent channel spacing was just 25 GHz, or ~0.2 nm. The main sources of limitations in soliton systems are timing jitter and amplitude noise In WDM systems there is an additional contribution to the timing jitter from interactions between channels. Here, we examine the limitations of soliton WDM systems.
孤子WDM传输
掺铒光纤放大器的大增益带宽引起了人们对多信道波分复用系统的兴趣。对于跨洋和其他这样的长途系统,信道的数量受到累积增益带宽的限制,而累积增益带宽往往随着距离的增加而迅速减少。对于NRZ系统,额外的限制来自信道之间的四个波混频。孤子传输减少了这些问题,并允许大大减少信道间距。特别是,在最近的实验中,相邻通道间距仅为25 GHz,即~0.2 nm。在WDM系统中,信道间的相互作用还会对定时抖动产生额外的影响。在这里,我们研究了孤立波分复用系统的局限性。
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