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带有半导体光放大器(SOA)和半导体锁模激光器的8通道波分复用(WDM)硅光子学收发器

8-channel WDM silicon photonics transceiver with SOA and semiconductor mode-locked laser.

作者信息

Moscoso-Mártir Alvaro, Tabatabaei-Mashayekh Ali, Müller Juliana, Nojić Jovana, Setter Rony, Nielsen Mad, Sandomirsky Anna, Rockman Sylvie, Mentovich Elad, Merget Florian, Garreau Alexandre, Lelarge François, Witzens Jeremy

出版信息

Opt Express. 2018 Sep 17;26(19):25446-25459. doi: 10.1364/OE.26.025446.

Abstract

We demonstrate an integrated 8 by 14 Gbps dense wavelength division multiplexed silicon photonics transceiver that makes use of an external mode-locked laser as a light source and a single semiconductor optical amplifier for post-modulation signal amplification. Remaining components necessary for modulation, filtering and (de‑)multiplexing are monolithically integrated in a single chip. In all system experiments, all eight channels are jointly operated with independent data streams in order to include impairments arising out of nonlinear effects inside the SOA while benchmarking the system performance. The transmitter, measured with a commercial reference receiver, supports on-off keying data transmission with an uncorrected BER ranging between 1e-5 and 5e-7 for all channels in back-to-back configuration and between 8e-4 and 1e-5 after 10 km transmission (both PRBS 2-1). The three best channels of the full link consisting in the silicon photonics transmitter operated with the silicon photonics receiver in back-to-back configuration maintain a BER better than the targeted 5e-5. Based on link budget modeling, we expect this target to be reached for all 8 channels pending improvement of the receiver offset compensation loop.

摘要

我们展示了一种集成的8×14 Gbps密集波分复用硅光子收发器,该收发器利用外部锁模激光器作为光源,并使用单个半导体光放大器进行后调制信号放大。调制、滤波和(解)复用所需的其余组件单片集成在单个芯片中。在所有系统实验中,所有八个通道都与独立数据流联合运行,以便在对系统性能进行基准测试时纳入SOA内部非线性效应产生的损伤。使用商用参考接收器测量时,发射器支持开关键控数据传输,在背对背配置下,所有通道的未校正误码率在1e-5和5e-7之间,在10 km传输后(均为PRBS 2-1)在8e-4和1e-5之间。由硅光子发射器和硅光子接收器背对背配置运行组成的全链路中,三个最佳通道的误码率优于目标值5e-5。基于链路预算建模,我们预计在接收器偏移补偿环路得到改进后,所有8个通道都能达到这一目标。

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