标题: Tamm 电浆子紫外光雷射的设计与制作
Design and Fabrication of Tamm Plasmon Polariton UV Lasers
作者: 许雯惠
陈国平
Xu, Wen-Hui
Chen, Kuo-Ping
影像与生医光电研究所
关键字: Tamm 电浆子;氧化锌;强耦合;激子极化子;紫外光雷射;Tamm plasmon;ZnO;strong coupling;exciton polariton;UV laser
公开日期: 2017
摘要: 当电子与电洞藉由库伦作用力结合所形成的激子能态与光子能态非常接
近时会分裂成两个不同的极激子分支,我们称为上能级激子与下能级激子。
而这种激子-极化子拥有相当小的有效质量且拥有玻色子特性,因此可以不用在绝对低温下就能观察玻色-爱因斯坦冷凝效应。
藉由动态冷凝物来形成激子-极化子雷射是一种拥有相当低阈值的新颖光源。在此论文,我们用 Tamm 电浆极化子结合氧化锌来实现作用在紫外光的雷射。由于 Tamm 电浆极化子可以提供强局域电场在激子形成的作用
层中,因此我们可以材料放置在强电场处来达到强激子-极化子耦合效果。
而氧化锌是一种拥有直接能隙以及束缚能高达 60 meV 的材料,且他的作用波段在紫外光波段,而目前作用在紫外光波段的雷射数量并不多,因此此子外波段雷射可以应用在生医方面,例如杀菌、癌细胞治疗等等。
在实验结果中,我们可以在 373 nm 处观察到激子-极化子强耦合且rabi splitting 达到 140 meV。并且我们透过雷射阈值、线宽以及变角度色散曲线来辨别相对应的雷射特性。这些结果也提供了解激子-Tamm 极化子的雷射机制。
Electrons and holes coupled by the Coulomb force in semiconductors could form the quasi-particle, which is so called exciton. The exciton strongly couples with photon and produce the exciton-polariton. The coupling would split to two polariton branches: upper polariton branch (UPB) and lower polariton branch(LPB). Exciton-polaritons have the small effective mass and has the similar
properties of bosons. Therefore, it can be an ideal candidates to observe the Bose–Einstein condensation at room temperature.
The exciton-polariton laser generated by dynamical condensates is a low threshold novel coherent light source. In this study, the ZnO based Tamm plasmon
polariton (TPP) ultraviolet laser is realized. TPP provides the strong electric field confinements in the active layer with excitons. The strong coupling of exciton
polariton is at 373 nm and the large Rabi-splitting about 140 meV is observed.
The corresponding lasing behaviors, such as threshold energy, linewidth, angular dispersion curve are verified. These results afford a basis to understand the exciton-Tamm polaritons lasing mechanisms.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070458208
http://hdl.handle.net/11536/142313
显示于类别:Thesis