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Modeling of widely tunable V-cavity semiconductor laser using time-domain traveling-wave method

机译:利用时域行波法建模可调谐V腔半导体激光器

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摘要

We investigate the static and dynamic characteristics of the widely tunable V-cavity semiconductor laser using the time-domain traveling-wave method. The theoretical model is presented. The simulation results are compared with experimental data for an all-active V-cavity laser, and good agreements are obtained. To improve the device performance, a new device structure with passive tuning waveguides is designed. The numerical results show that 21 channels can be achieved by single electrode tuning using carrier injection effect with two cavities of 420 and 440 mu m long. Dynamic wavelength switching between different channels is simulated. Mode competition is observed during the transient and the switching delay time varies from 3 to 18.5 ns for different switching paths. A simple algorithm for quasi-continuous tuning is developed for the first time by varying the injection currents on the channel selector electrode and the fine-tuning electrode synchronously. A quasi-continuous tuning of 16.8 nm is achieved with a current variation of less than 20 mA on each electrode. For direct modulation characteristics, small signal response simulation is carried out by an impulse current injection with a fast Fourier transform algorithm, and a 3 dB bandwidth of 7 GHz is obtained when biased at 100 mA. Moreover, 2.5 and 10 Gb/s direct intensity modulation are also demonstrated. The simulation results show great potential for the compact and low-cost tunable laser to be used for wavelength-agile access and data center networks, as well as biomedical applications. (C) 2015 Optical Society of America
机译:我们使用时域行波方法研究了可广泛调谐的V腔半导体激光器的静态和动态特性。提出了理论模型。将仿真结果与全有源V腔激光器的实验数据进行了比较,并获得了良好的一致性。为了提高器件性能,设计了一种带有无源调谐波导的新器件结构。数值结果表明,利用载流子注入效应,通过两个电极分别具有420和440μm长的腔,可以通过单电极调谐实现21个通道。模拟了不同通道之间的动态波长切换。在瞬态期间观察到模式竞争,并且对于不同的开关路径,开关延迟时间在3到18.5 ns之间变化。通过同步改变通道选择器电极和微调电极上的注入电流,首次开发了一种准连续调谐的简单算法。每个电极上的电流变化小于20 mA,可实现16.8 nm的准连续调谐。对于直接调制特性,通过使用快速傅立叶变换算法的脉冲电流注入来执行小信号响应仿真,当以100 mA偏置时可获得7 GHz的3 dB带宽。此外,还演示了2.5和10 Gb / s直接强度调制。仿真结果显示出紧凑,低成本的可调谐激光器在波长捷变接入和数据中心网络以及生物医学应用中具有巨大的潜力。 (C)2015年美国眼镜学会

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