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首页> 外文期刊>Photonics Technology Letters, IEEE >25-GHz Spaced Spectrum-Sliced WDM PON Using 50-GHz AWGs
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25-GHz Spaced Spectrum-Sliced WDM PON Using 50-GHz AWGs

机译:使用50 GHz AWG的25 GHz间隔频谱切片WDM PON

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We demonstrate a spectrum-sliced wavelength-division-multiplexed passive optical network with the channel spacing of 25 GHz, where even and odd channels are spectrum sliced separately using a pair of 50-GHz arrayed-waveguide gratings (AWGs). The 50-GHz AWGs have an offset of 25 GHz with respect to each other. Similarly, the demultiplexing is done using a pair of 50-GHz AWGs for even and odd channels separately. Our use of 50-GHz AWGs gives better bit-error rate performances than using 25-GHz AWGs in a conventional way. With 50-GHz AWGs, the channel bandwidth is increased about two times larger than using 25-GHz AWGs. Moreover, the increased spectral overlap between adjacent channels produces relatively small crosstalk since the channels are incoherent and their intensity noise is absorbed by reflective semiconductor amplifiers. The 25-GHz spaced spectrum-sliced WDM passive optical network can be realized more easily using 50-GHz AWGs since 50-GHz AWGs are more available in the market than 25-GHz AWGs.
机译:我们演示了具有25 GHz信道间隔的频谱切片波分复用无源光网络,其中偶数和奇数信道是使用一对50 GHz阵列波导光栅(AWG)分别进行频谱切片的。 50 GHz AWG彼此之间的偏移为25 GHz。类似地,使用一对分别用于偶数和奇数通道的50 GHz AWG完成多路分解。与以传统方式使用25 GHz AWG相比,我们使用50 GHz AWG可以提供更好的误码率性能。使用50 GHz AWG,通道带宽将增加到使用25 GHz AWG两倍。此外,相邻通道之间增加的频谱重叠会产生相对较小的串扰,因为通道不相干,并且其强度噪声被反射半导体放大器吸收。使用50 GHz AWG可以更轻松地实现25 GHz间隔频谱切片WDM无源光网络,因为50 GHz AWG比25 GHz AWG在市场上可获得更多。

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