标题: | 量子点光子晶体面射型雷射 Photonic Crystal Surface Emitting Lasers Based on Quantum-Dot Structure |
作者: | 程子珊 林圣迪 林国瑞 Chen, Tzu-Shan Lin, Sheng-Di Lin, Gray 电子研究所 |
关键字: | 量子点;光子晶体;雷射;Quantum-Dot;Photonic Crystal;Lasers |
公开日期: | 2017 |
摘要: | 本论文成功制作出可在室温操作的光激发砷化铟量子点光子晶体面射型雷射,操作温度甚至可高达70度,雷射的关键就是在于光子晶体孔洞的蚀刻深度,孔洞深度关系到耦合的强弱,要有足够强的耦合才能达到雷射条件。我们使用的试片是主动层为自聚型的砷化铟量子点,有着特殊设计磊晶结构,其上下披覆层不对称,将上披覆层减薄至剩下200 nm,可使得光场进入到光子晶体共振腔的强度增强,增加耦合强度。接着有对于不同结构的光子晶体雷射进行分析,其中包含了周期、孔洞深度与填充率。利用周期的不同,同一片试片上可以制作出波长范围60 nm的面射型光子晶体雷射,藉由改变孔洞深度与填充率,可以降低阀值能量与提升斜率效率,目前做到最低的阀值能量为1.88 kW⁄(cm^2 )。 In this thesis, InAs quantum-dot photonic crystal surface emitting lasers (PCSELs) were fabricated and room-temperature lasing emissions were demonstrated by optical pumping. The operating temperature can be as high as 70oC.The etching depth of PC holes is the key process parameter for efficient diffraction coupling and the resulting lasing emissions. The active layer of ours elected epitaxial laser samples is self-assembly InAs quantum-dot(QD).This sample has a special design that is upper cladding and lower cladding layers are asymmetric. This special design enhances the intensity of the light entering the photonic crystal resonator and the diffraction coupling. Next, we studied PC structures, including period, depth of holes and filling factor. We can fabricate PCSELs with different wavelengths in the range of 60 nm by changing the PC period. By changing the parameter for depth of holes and filling factor, we can reduce the threshold and improve the slope efficiency. Up to now the lowest threshold is 1.88 kW⁄(cm^2 ). |
URI: | http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070350155 http://hdl.handle.net/11536/140244 |
显示于类别: | Thesis |