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Silicon Photonics Transmitter with SOA and Semiconductor Mode-Locked Laser

机译:具有SOA和半导体锁模激光器的硅光子发射器

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摘要

We experimentally investigate an optical link relying on silicon photonics transmitter and receiver components as well as a single section semiconductor mode-locked laser as a light source and a semiconductor optical amplifier for signal amplification. A transmitter based on a silicon photonics resonant ring modulator, an external single section mode-locked laser and an external semiconductor optical amplifier operated together with a standard receiver reliably supports 14 Gbps on-off keying signaling with a signal quality factor better than 7 for 8 consecutive comb lines, as well as 25 Gbps signaling with a signal quality factor better than 7 for one isolated comb line, both without forward error correction. Resonant ring modulators and Germanium waveguide photodetectors are further hybridly integrated with chip scale driver and receiver electronics, and their co-operability tested. These experiments will serve as the basis for assessing the feasibility of a silicon photonics wavelength division multiplexed link relying on a single section mode-locked laser as a multi-carrier light source.
机译:我们实验研究依赖于硅光子发射器和接收器组件以及单节半导体锁模激光器作为光源和半导体光放大器进行信号放大的光链路。基于硅光子共振环形调制器的发射器,外部单节锁模激光器和与标准接收器一起工作的外部半导体光放大器,可可靠地支持14 Gbps的开关键控信令,信号质量因数8优于7连续的梳状线,以及一条隔离梳状线的信号质量因数优于7的25 Gbps信令,并且都没有前向纠错。谐振环形调制器和锗波导光电探测器进一步与芯片级驱动器和接收器电子设备混合集成,并测试了它们的协作性。这些实验将作为评估基于单节锁模激光器作为多载波光源的硅光子波分复用链路可行性的基础。

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