标题: 半导体雷射内部光场与外部输出之分析与模拟
Analysis and Simulation for Internal Optics Field and External Output in Semiconductor Laser
作者: 陈哲贤
吴朴伟
郑裕庭
Chen ,Jer-Shien
Wu, Pu-Wei
Cheng, Yu-Ting
工学院半导体材料与制程设备学程
关键字: 横截面;纵断面;多区段半导体雷射;非稳定;周期性光信号输出;cross-section;longitudinal section;unstability;multi-section semiconductor laser;periodic optical output
公开日期: 2017
摘要: 多区段半导体雷射于高速光学网路中有其多重角色,既可为雷射光源、亦可为时脉光源,可运用于波长转换、亦可运用于时脉恢复。当作为时脉光源时,多区段半导体雷射之输出为周期性光信号,其周期性光信号输出是否为稳定的周期性光信号?
  本研究以二区段分布反馈式雷射为核心,将聚焦之点为:“‘二区段分布反馈式雷射’之‘内部光场变化’与‘外部周期性波形光输出变化’,于‘二区段分布反馈式雷射’之‘研究框架’下,进一步探究雷射之‘细部结构变化’对光输出之‘细部周期性波形变化’”。
  本研究以“半导体雷射整体腔体长度”、“二端面相位改变”、“线宽增强因子”为结构参数;以“分散-Q-交换”与“模态竞争”理论基础,模拟演算法采有限差分法分析;先与Carroll(1998)之先前研究相互比较内部光场特性,验证模拟结果可接受性。次再以上开结构参数为调整,模拟12种情境,验证上开结构参数的确影响了周期性光信号输出稳定性之波形改变;另外亦验证即使结构参数并未调整改变,即横截面并未有异动,然非稳定的周期性光信号仍有可能发生;故改以引入信号时间序列之观念分析,采用自我回归模型进行实证分析,验证研究假设:“半导体雷射周期性光信号输出具有时间序列自我回归之特性”;实证分析结果验证自我回归模型之统计显着性,即纵断面分析具有时间序列特性。本研究最后统合横截面分析与纵断面分析,提出整合性的二阶段分析架构,为分析周期性光信号输出是否为稳定的周期性光信号提出系统性判断架构。
Multi-section semiconductor laser is with multiple roles, i.e. laser source, periodic optical clock source, wavelength conversion application, and clock recovery. Being a periodic optical clock source, the output of one multi-section semiconductor laser is periodic optical signal. But, will such semiconductor laser periodic optical output be stable periodic optical signal?
This report focuses on two sections distributed feedback semiconductor laser, and the research point is the internal optical field dynamics of two sections distributed feedback semiconductor laser and dynamics of output periodic optical signal. Limited to the frame of two sections distributed feedback semiconductor laser, we study the effect of output waveform dynamics because of laser structure parameter.
The study take semiconductor laser cavity length, two facet phase changing, and linewidth enhancement factor as structure parameters. The dispersive-Q-switching and mode beating theory are the basis of finite difference analysis algorithm; and we first compare the internal optical field with the result of the prior art by Carroll (1998) to check the acceptance of initial simulation result.
Then, based on the above three structure parameters, we tune these parameters to simulation 12 situation to verify that the above laser structure parameters affect the stability in waveform of periodic optical output. In addition, we also verify that even the structure parameters are unchanged, in other words, no cross-section dynamic, it is still possible to generate unstable periodic optical output, hence, we introduce signal time series concept, i.e. using auto-regression model to process practical analysis. Our research hypothesis: the periodic optical output signal of semiconductor lasers is with time series auto-regression. The practical result verify that the statistical significant in auto-regression model, in other words, longitudinal section is like as time series.
We propose one combined analysis of longitudinal section and cross-section, which include two-step analysis architecture as the decision weather semiconductor laser periodic optical output be stable periodic optical signal.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070061330
http://hdl.handle.net/11536/140540
显示于类别:Thesis