论文标题
琼斯空间中的光场恢复
Optical Field Recovery in Jones Space
论文作者
论文摘要
光学全场恢复使得可以补偿数字信号处理中的光纤损伤,例如色散和极化模式色散(PMD)。对于成本敏感的短距离光学网络,最近提出了一些高级单极化(SP)光场回收方案,以避免色散引起的功率褪色效果,并提高光谱效率,以提高较大的潜在能力。偏振分层多路复用(PDM)可以进一步使这些SP载体辅助直接检测(DD)方案的光谱效率和系统容量增加一倍。然而,随机极化旋转引起的所谓极化现象是一个基本障碍,可防止SP载体辅助的DD系统极化多样性。在本文中,我们提出了琼斯空间场恢复(JSFR)的接收器,以实现琼斯空间中SP载体辅助的DD方案的极化多样性。理论上探讨了JSFR的不同接收器结构和简化的恢复过程。提出的JSFR将SP DD方案推向PDM,而无需额外的光信号噪声比(OSNR)罚款。此外,由于光场回收是在极化恢复之前进行的,因此JSFR对PMD显示出良好的耐受性。在实验概念实验中,我们使用基于22个耦合器的拟议JSFR在80公里的单模纤维上展示了448-GB/s接收。此外,我们从定性地比较了琼斯空间中的光场恢复,并从调制维度的角度进行了空间。从定性上讲,我们比较了琼斯空间中的光场恢复,并从调制维度的角度进行了空间。
Optical full-field recovery makes it possible to compensate for fiber impairments such as chromatic dispersion and polarization mode dispersion (PMD) in the digital signal processing. For cost-sensitive short-reach optical networks, some advanced single-polarization (SP) optical field recovery schemes are recently proposed to avoid chromatic dispersion-induced power fading effect, and improve the spectral efficiency for larger potential capacity. Polarization division multiplexing (PDM) can further double both the spectral efficiency and the system capacity of these SP carrier-assisted direct detection (DD) schemes. However, the so-called polarization fading phenomenon induced by random polarization rotation is a fundamental obstacle which prevents SP carrier-assisted DD systems from polarization diversity. In this paper, we propose a receiver of Jones-space field recovery (JSFR) to realize polarization diversity with SP carrier-assisted DD schemes in Jones space. Different receiver structures and simplified recovery procedures for JSFR are explored theoretically. The proposed JSFR pushes the SP DD schemes towards PDM without extra optical signal-to-noise ratio (OSNR) penalty. In addition, the JSFR shows good tolerance to PMD since the optical field recovery is conducted before polarization recovery. In the concept-of-proof experiment, we demonstrate 448-Gb/s reception over 80-km single-mode fiber using the proposed JSFR based on 22 couplers. Furthermore, we qualitatively compare the optical field recovery in Jones space and Stokes space from the perspective of the modulation dimension. Qualitatively, we compare the optical field recovery in the Jones space and Stokes space from the perspective of the modulation dimension.