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基于硅双驱动和IQ马赫-曾德尔调制器并带有电封装的直接检测奈奎斯特单边带传输的实验比较

Experimental comparison of direct detection Nyquist SSB transmission based on silicon dual-drive and IQ Mach-Zehnder modulators with electrical packaging.

作者信息

Ruan Xiaoke, Li Ke, Thomson David J, Lacava Cosimo, Meng Fanfan, Demirtzioglou Iosif, Petropoulos Periklis, Zhu Yixiao, Reed Graham T, Zhang Fan

出版信息

Opt Express. 2017 Aug 7;25(16):19332-19342. doi: 10.1364/OE.25.019332.

DOI:10.1364/OE.25.019332
PMID:29041127
Abstract

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.

摘要

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。

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