A combined model of the transmission-line laser model (TLLM) and the digital filter approach is developed to simulate the shuttering characteristic of a semiconductor optical amplifier (SOA), which is inte- grated...A combined model of the transmission-line laser model (TLLM) and the digital filter approach is developed to simulate the shuttering characteristic of a semiconductor optical amplifier (SOA), which is inte- grated with a sampled grating distributed Bragg reflector (SGDBR) laser, to create a so called SOA-SGDBR laser. The SOA section acts as a shutter to blank the laser output during wavelength switching events. Simulated results show that the turn-on edge of the SOA blanking process will oscillate when the facet reflection of SOA is relatively high. This phenomenon is also observed by experiments.展开更多
调制光栅Y分支激光器(modulated grating Y branch laser,MGY)是光纤光栅解调系统的理想光源,目前鲜有针对其调谐特性的建模研究,为研究MGY的调谐特性,本文将传输线激光器模型(transmission line laser model,TLLM)推广到模拟MGY,采用T...调制光栅Y分支激光器(modulated grating Y branch laser,MGY)是光纤光栅解调系统的理想光源,目前鲜有针对其调谐特性的建模研究,为研究MGY的调谐特性,本文将传输线激光器模型(transmission line laser model,TLLM)推广到模拟MGY,采用TLLM、传输矩阵法(transfer matrix method,TMM)与数字滤波方法相结合的组合模型对模拟MGY进行研究。在组合模型中,对增益区和相位区使用基于时域的TLLM;对左、右调制光栅(left/right modulated grating,LMG/RMG)区先使用基于频域的TMM进行表征,然后通过反向傅里叶变换为时域模型,成功模拟了MGY的输出-电流特性曲线、静态调谐特性等,与已发表的实验结果相近。此综合方法可用于研究使用频域模型难以获得的器件的瞬态响应和激光光谱特性。展开更多
文摘A combined model of the transmission-line laser model (TLLM) and the digital filter approach is developed to simulate the shuttering characteristic of a semiconductor optical amplifier (SOA), which is inte- grated with a sampled grating distributed Bragg reflector (SGDBR) laser, to create a so called SOA-SGDBR laser. The SOA section acts as a shutter to blank the laser output during wavelength switching events. Simulated results show that the turn-on edge of the SOA blanking process will oscillate when the facet reflection of SOA is relatively high. This phenomenon is also observed by experiments.