标题: 特殊二维光子晶体能带分析与量子点的光电特性研究
Special Designed 2-Dimensional Photonic Crystal Bandsructures and Optoelectronic Properties of Quantum Dots
作者: 杨赐麟
YANG SU-LIN
国立交通大学电子物理学系(所)
关键字: 光子晶体;平面波展开法;完全能隙;量子点;光调制反射光谱;深层能阶;photonic crystal;plane-wave expansion;complete bandgap;quantum dot;photoreflectance;deep level
公开日期: 2008
摘要: 本计画拟进行特殊二维光子晶体及量子点光电特性的分析研究。在光
子晶体的模拟计算分析上,我们将设计特殊二维光子晶体结构、建立计算
光子晶体能带的理论模型与平面波展开(plane-wave expansion)法的模拟
程式,比较分析多边柱形-圆柱形及四边柱形渐近切边至正八边柱形二维
光子晶体的TE 模态、TM 模态以及完全能隙的变化关系。期望能以完整、
循序渐进的方式,探讨分析光子晶体能带的决定因素及相关的物理机制。
而在量子点的光电特性研究上,乃针对InAs 量子点结构,以冷激光(PL)、
光调制反射光谱(PR)的方法进行其物理及光电特性研究分析,并探讨局
限结构对于InAs 量子点成长的影响,用以分析局限结构对量子点的光学
表现、能阶跃迁、重电洞与轻电洞的能带偏移、尺寸均匀度、与局限能力
等的影响。进一步的,我们利用光调制反射光谱的变温、变频量测方法,
配合阿瑞尼斯(Arrhenius)图的拟合结果,分析出InAs 量子点结构中可能
的深层能阶,以深入探讨量子点结构的电子能态。
This project investigates the optical properties of specially designed
2-dimensional photonic crystals and optoelectronic properties of InAs quantum dots.
We will build up the theoretical models and program codes with plane-wave
expansion method to calculate the TE、TM mode and the complete band gaps of
n-side polygonal, circular, edge cutting polygonal columned array photonic crystals.
Following by systematic and complete analysis, the controlling factors and related
mechanism determining the properties of optical bands of photonic crystals can be
understood and utilized with confidence.
We will use photoluminescence (PL) and photoreflectance (PR) techniques to
measure the optoelectronic properties of self-assembled InAs quantum dots (QDs)
covered with InAlAs/InGaAs composite layers. Several composite layer structures
are considered to study the strain-reduced effects on the optical characteristics,
transition energies, energy shifts, and barrier confinement of InAs QDs.
Furthermore, PR technique and Arrhenius analysis are used to investigate the deep
levels in the InAs QDs to explore deeply the electronic structures of QDs.
官方说明文件#: NSC96-2112-M009-033-MY2
URI: http://hdl.handle.net/11536/102876
https://www.grb.gov.tw/search/planDetail?id=1581039&docId=270731
显示于类别:Research Plans