Shi-Chao Zhu, Xi Guo, Gui-Dong Deng, Xun Lei, Quan Cao
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引用次数: 0
Abstract
The growing demand for global communication services necessitates high bandwidth interconnects. With a gradual maturity in the spectral efficiency (SE) growth, extending optical bandwidth beyond the C + L-band is crucial for future optical network upgrades. Silicon photonics (SiPh) technology has already been practically implemented in short-reach optical interconnects and coherent communication links, due to the advantages in size, cost, and power consumption. Despite its commercial success, achieving a high extinction ratio (ER) with wide optical bandwidth in the volume production poses difficulties. In this paper, a power compensation method is proposed and investigated theoretically and experimentally. Compared to the convention method, our algorithm is still robust in a large range of extinction ratio from 10 dB to 45 dB, when the other child Mach–Zehnder modulator (MZM) is non-ideal and other noise exists. The new ER compensation method will be very useful in wide optical bandwidth transceivers.
全球通信服务需求的不断增长要求高带宽互联。随着频谱效率(SE)的逐步成熟,将光带宽扩展到 C + L 波段以外对于未来的光网络升级至关重要。硅光子(SiPh)技术由于在尺寸、成本和功耗方面的优势,已经在短距离光互连和相干通信链路中得到了实际应用。尽管在商业上取得了成功,但在批量生产中实现高消光比(ER)和宽光带宽仍有困难。本文提出了一种功率补偿方法,并对其进行了理论和实验研究。与传统方法相比,当另一个子马赫-泽恩德调制器(MZM)非理想和存在其他噪声时,我们的算法在 10 dB 至 45 dB 的较大消光比范围内仍然是稳健的。新的ER补偿方法将在宽光带宽收发器中大有用武之地。