Department of Electronics Engineering, Kangwon National University, Samcheok 25913, Republic of Korea.
Department of Semiconductor Engineering, Seoul National University of Science and Technology, Seoul 01811, Republic of Korea.
Sensors (Basel). 2023 Jun 26;23(13):5908. doi: 10.3390/s23135908.
It has been proposed to implement the >100 Gb/s data-center interconnects using a two-channel optical time-division multiplexed system with multilevel pulse-amplitude modulation. Unlike the conventional four-channel optical time-division multiplexed system which requires an expensive narrow pulse, the two-channel system can be implemented cost-effectively using a wide pulse (which can be simply generated using a single modulator). The two-channel system is expected to be practically available using an integrated transmitter in a chip due to the recent advances in photonics-integrated circuits. This paper reviews the current stage of research on a two-channel optical time-division multiplexed system and discusses possible research directions. Furthermore, it has been demonstrated that 200 Gb/s signals can be generated by using modulators with only 17.2 GHz bandwidth. Therefore, the use of the phase-alternating pulse can make the multiplexed signal robust to chromatic dispersion, enabling the 200 Gb/s 4-level pulse-amplitude-modulated signal to be transmitted over 1.9 km of standard single-mode fiber.
有人提议使用双通道光时分复用系统和多电平脉冲幅度调制来实现>100 Gb/s 的数据中心互连。与传统的四通道光时分复用系统需要昂贵的窄脉冲不同,双通道系统可以通过使用宽脉冲(可以通过单个调制器简单地产生)来经济有效地实现。由于光子集成电路的最新进展,双通道系统有望在芯片中使用集成发射器在实际中可用。本文回顾了双通道光时分复用系统的当前研究阶段,并讨论了可能的研究方向。此外,已经证明,使用带宽仅为 17.2 GHz 的调制器可以产生 200 Gb/s 的信号。因此,使用交替相位脉冲可以使复用信号对色度色散具有鲁棒性,从而使 200 Gb/s 4 电平脉冲幅度调制信号能够在 1.9 公里的标准单模光纤上传输。