标题: 用波导模型研究面射型半导体雷射的物理特性
The Analysis of VCSELs Physics Properties By Using Waveguide Models
作者: 江盛攸
Jiang, Sheng-Iou
陈永富
Chen, Yong-Fu
理学院应用科技学程
关键字: 面射型半导体雷射;波导;物理特性;VCSEL;Waveguide;Physics Properties
公开日期: 2015
摘要: 面射型雷射的理论分析理论概念在过去十年已有相当程度的诠释了VCSELs的光场物理特征及光谱特性,然而对于入射腔体边界角度大的高阶横向模态,光场的束缚因子下降,其有一定的比例散漏至腔体外,其对应的光谱也会跟狄利克雷边界条件问题的亥姆霍兹方程式预期结果有较大的偏差,因此,直观上,分析涵盖数百个横向模态的大面积VCSELs时,利用dielectric waveguide model应能更精确诠释实际的现象。除此之外,其电场模态多属于某一方向的线性偏振,高阶横向模态容易被激发且在空间上会呈现的几何轨迹结构,所以研究空间有特定结构的电场模态偏振特性是相当有意义的。而过去较少有此方面相关研究,所以我的论文研究方向偏向于使用波导模型研究面射型半导体雷射的物理现象。
The theoretical analysis concept of VCSELs in the past decade has been a considerable interpretation of physical characteristics of the electric field and the spectral characteristics of VCSELs. However, the incident angle of the cavity boundary transverse modes, electric field confinement factor fall, there is a certain percentage of its leak, which corresponds to the Helmholtz equation with spectral also expected results Dirichlet boundary conditions of a large deviation.
Therefore, we think the use of dielectric waveguide model should be more precise interpretation of the actual phenomenon. On the intuitive analysis covers hundreds when a large area of the transverse mode VCSELs, the use of dielectric waveguide model should be more precise interpretation of the actual phenomenon.
In addition, the electric field modes are mostly linear polarization in one direction, and higher-order transverse modes can easily be excited and will appear in the space of geometric track structure, there are quite meaningful. In the past this area have less research, so my thesis research tend to use waveguide model of surface-emitting semiconductor laser physical phenomena.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT070252909
http://hdl.handle.net/11536/126128
显示于类别:Thesis