支持数字子载波复用的无载波相位恢复接收机

Yunhe Ma, Meng Xiang, Wen Cheng, Ruitao Wu, Peijian Zhou, G. Zhou, Jilong Li, Jianping Li, S. Fu, Yuwen Qin
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引用次数: 0

摘要

摘要无载波相位恢复(CF-PR)接收机可以在没有连续波光载波的情况下,仅从两个去相关的强度测量中重建光场信息。在这里,我们提出了一种具有硬件效率和调制格式透明优点的数字子载波复用(DSM)启用的CF-PR接收器。通过数值检索经过80公里标准单模光纤(SSMF)传输的QPSK/16QAM/32QAM调制的56 GBaud DSM信号的光场信息,我们发现与传统的单载波对应物相比,启用DSM的CF-PR接收器有助于降低CF-PR过程的实现复杂性。因为每个子载波较低的符号率有助于降低PR迭代过程中多色色散补偿和仿真的实现复杂性。此外,DSM-enabled CF-PR接收器被证实对各种传输缺陷具有鲁棒性,包括发射端激光线宽及其波长漂移、接收端时间偏差以及两个强度支路之间的幅度不平衡。最后,通过首次在40 km SSMF传输后恢复25 GBaud 16QAM信号的光场信息,实验验证了启用dsm的CF-PR接收机的优越性。因此,使能dsm的CF-PR接收器有望实现具有直接探测的高容量光子互连。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital subcarrier multiplexing-enabled carrier-free phase-retrieval receiver
Abstract. The carrier-free phase-retrieval (CF-PR) receiver can reconstruct the optical field information only from two de-correlated intensity measurements without the involvement of a continuous-wave optical carrier. Here, we propose a digital subcarrier multiplexing (DSM)-enabled CF-PR receiver with hardware-efficient and modulation format-transparent merits. By numerically retrieving the optical field information of 56 GBaud DSM signals with QPSK/16QAM/32QAM modulation after 80-km standard single-mode fiber (SSMF) transmission, we identify that the DSM enabled CF-PR receiver is beneficial in reducing the implementation complexity of the CF-PR process, in comparison with the traditional single-carrier counterpart, because the lower symbol rate of each subcarrier is helpful in reducing the implementation complexity of multiple chromatic dispersion compensations and emulations during the PR iteration. Moreover, the DSM-enabled CF-PR receiver is verified to be robust toward various transmission imperfections, including transmitter-side laser linewidth and its wavelength drift, receiver-side time skew, and amplitude imbalance between two intensity tributaries. Finally, the superiority of the DSM-enabled CF-PR receiver is experimentally verified by recovering the optical field information of 25 GBaud 16QAM signals, after 40-km SSMF transmission for the first time. Thus, the DSM-enabled CF-PR receiver is promising for high-capacity photonic interconnection with direct detection.
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