Yu Yu, Zhang Xinliang, Rosas-Fernández Jose B, Huang Dexiu, Penty Richard V, White Ian H
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, 430074,PR China.
Opt Express. 2009 Mar 2;17(5):3964-9. doi: 10.1364/oe.17.003964.
We propose and demonstrate simultaneous optoelectronic NRZ-to-RZ regenerative format conversion for multiple DWDM channels using a single phase modulator (PM) and a fibre delay-interferometer (DI). In order to accommodate multiple DWDM channels, the DI is designed to have a free spectral range (FSR) equal to the channel spacing. This thus extracts the chirp induced by the phase modulation for all the channels at the same time. Since the original carriers are suppressed to some extent, the NRZ-to-RZ conversions can be achieved with regeneration. Multi-channel format conversion is successfully demonstrated for 16 channels at 10 Gb/s and 8 channels at 20 Gb/s, with a channel spacing of 100 GHz. Bit error ratio (BER) measurements at 10 Gb/s show 3.5 and 4.2 dB penalty improvements for 50 and 75 km transmission without dispersion compensation, respectively. Significant extinction ratio (ER) improvement and timing jitter reduction is observed for the converted channels.
我们提出并演示了使用单个相位调制器(PM)和光纤延迟干涉仪(DI)对多个密集波分复用(DWDM)通道进行同时的光电非归零(NRZ)到归零(RZ)再生格式转换。为了适应多个DWDM通道,DI被设计为具有等于通道间距的自由光谱范围(FSR)。这样就可以同时提取所有通道相位调制所引起的啁啾。由于原始载波在一定程度上被抑制,因此可以通过再生实现NRZ到RZ的转换。成功演示了在10 Gb/s下对16个通道以及在20 Gb/s下对8个通道的多通道格式转换,通道间距为100 GHz。10 Gb/s下的误码率(BER)测量结果表明,在没有色散补偿的情况下,对于50 km和75 km的传输,分别有3.5 dB和4.2 dB的代价改善。对于转换后的通道,观察到显著的消光比(ER)改善和定时抖动降低。