標題: | 光纖和微碟共振腔耦合之特性研究 The coupling characteristics between fiber and microdisk microcavities |
作者: | 趙士興 Chao, Shih-Shing 張文豪 Chang, Wen-Hao 電子物理系所 |
關鍵字: | 耳語廊模;whispering-gallery modes |
公開日期: | 2010 |
摘要: | 在本論文中,利用光纖側收量測砷化銦量子點的微碟共振腔所發出的螢光。特定模態與光纖的耦合可使螢光效率比傳統正向收光高達10倍左右。另外借由有限差分時域法模擬波導和微碟共振腔耦合的情形,對照實驗所觀察的現象進行解釋。
本論文也利用近場光學技術研究微碟共振腔的空間場強分佈,進而了解耳語廊模態以駐波的形式存在於微碟共振腔中。另外,不同徑向模態數 的空間分佈亦被探討。最後,微碟共振腔盤面的光瓣數為m個。顯示近場所掃描出的場強分布並非只由耳語廊模所貢獻,而是由砷化鎵量子點的場與耳語廊模態的場互相疊加後的結果。 We used optical fiber tip to collect emissions from the sidewall of microdisk cavities with embedding InAs/GaAs quantum dots. By using optical fiber tip, the collection efficiency of some particular whispering-gallery modes (WGMs) can be improved by a factor of 10. Finite-difference time-domain simulations are used to calculate waveguide coupled microdisk cavity. Scanning near-field optical microscopy (SNOM) is also used to study optical modes of microdisk cavity. Near-field images show that WGMs are standing wave in microdisk cavity. WGMs with different radial mode numbers are also investigated. Finally, we found that near-field images of the WGMs reveal m azimuthal maxima around the disk circumference. The results explain the intensity imaging arises from the superposition between the WGMs and InAs QDs field. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079721555 http://hdl.handle.net/11536/45038 |
Appears in Collections: | Thesis |
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