Ruan Xiaoke, Li Ke, Thomson David J, Lacava Cosimo, Meng Fanfan, Demirtzioglou Iosif, Petropoulos Periklis, Zhu Yixiao, Reed Graham T, Zhang Fan
Opt Express. 2017 Aug 7;25(16):19332-19342. doi: 10.1364/OE.25.019332.
We have designed and fabricated a silicon photonic in-phase-quadrature (IQ) modulator based on a nested dual-drive Mach-Zehnder structure incorporating electrical packaging. We have assessed its use for generating Nyquist-shaped single sideband (SSB) signals by operating it either as an IQ Mach-Zehnder modulator (IQ-MZM) or using just a single branch of the dual-drive Mach-Zehnder modulator (DD-MZM). The impact of electrical packaging on the modulator bandwidth is also analyzed. We demonstrate 40 Gb/s (10Gbaud) 16-ary quadrature amplitude modulation (16-QAM) Nyquist-shaped SSB transmission over 160 km standard single mode fiber (SSMF). Without using any chromatic dispersion compensation, the bit error rates (BERs) of 5.4 × 10 and 9.0 × 10 were measured for the DD-MZM and IQ-MZM, respectively, far below the 7% hard-decision forward error correction threshold. The performance difference between IQ-MZM and DD-MZM is most likely due to the non-ideal electrical packaging. Our work is the first experimental comparison between silicon IQ-MZM and silicon DD-MZM in generating SSB signals. We also demonstrate 50 Gb/s (12.5Gbaud) 16-QAM Nyquist-shaped SSB transmission over 320 km SSMF with a BER of 2.7 × 10. Both the silicon IQ-MZM and the DD-MZM show potential for optical transmission at metro scale and for data center interconnection.
我们设计并制造了一种基于嵌套双驱动马赫-曾德尔结构并集成了电气封装的硅光子同相正交(IQ)调制器。我们评估了将其用作IQ马赫-曾德尔调制器(IQ-MZM)或仅使用双驱动马赫-曾德尔调制器(DD-MZM)的单个分支来生成奈奎斯特形状单边带(SSB)信号的用途。还分析了电气封装对调制器带宽的影响。我们展示了在160公里标准单模光纤(SSMF)上实现40 Gb/s(10Gbaud)16进制正交幅度调制(16-QAM)奈奎斯特形状的SSB传输。在不使用任何色散补偿的情况下,DD-MZM和IQ-MZM测得的误码率(BER)分别为5.4×10和9.0×10,远低于7%的硬判决前向纠错阈值。IQ-MZM和DD-MZM之间的性能差异很可能是由于非理想的电气封装。我们的工作是首次对硅IQ-MZM和硅DD-MZM在生成SSB信号方面进行实验比较。我们还展示了在320公里SSMF上实现50 Gb/s(12.5Gbaud)16-QAM奈奎斯特形状的SSB传输,误码率为2.7×10。硅IQ-MZM和DD-MZM在城域规模的光传输和数据中心互连方面都显示出潜力。