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研究生: 張巍鐘
論文名稱: 應用漸逝波設計光子晶體與層狀結構之光學元件
指導教授: 吳謙讓
學位類別: 碩士
Master
系所名稱: 光電工程研究所
Graduate Institute of Electro-Optical Engineering
論文出版年: 2013
畢業學年度: 101
語文別: 中文
論文頁數: 29
中文關鍵詞: 漸逝波
英文關鍵詞: evanescent wave
論文種類: 學術論文
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  • 本論文的目的是研究層狀結構的光學性能的基礎上使用漸逝波。被認為是三種結構。首先,我們探討共振隧穿介電介質光子晶體(DDPC)。 DDPC在此,我們將介紹一個從高至低的界面的入射角大於臨界角的漸逝波。結果表明,這樣的有限DDPC可以用來設計一個多通道的發送濾波器。第二,我們繼續研究這也是另一個過濾器結構倏逝波的使用操作。該過濾器是特別適用於偏振依賴性的光學裝置。事實上,它是一種多通道的雙偏振帶通濾波器。第三,我們使用受抑全內反射(FTIR)來設計的50/50分束器。高折射率玻璃的色散關係,包括在我們的研究中。這種分離器的臨界條件已經顯露出來。

    The purpose of this thesis is to study the optical properties of layered structures based on the use of evanescent waves. Three structures are considered. First, we investigate resonant tunneling in a dielectric-dielectric photonic crystal (DDPC). In this DDPC, we introduce an evanescent wave from the high-to-low interface at an incidence angle larger than the critical angle. The results indicate that this finite DDPC can be used to design a multichannel transmission filter. Second, we continue to study another filter structure which is also operated with the use of evanescent wave. This filter is of particular use in the polarization-dependent optical device. In fact, it is a multichannel double-polarization band pass filter. Third, we use the frustrated total internal reflection (FTIR) to design a 50/50 beam splitter. The dispersion relation for the high-index glass is included in our study. The critical conditions for this splitter have been revealed.

    Contents Abstract i Acknowledgement ii Contents iii Chapter 1 Introduction 1-1 Literature Review 1 1-2 Motivations 2 1-3 Thesis Overview 2 Chapter 2 Transfer Matrix Method 2-1 2ⅹ2 Matrix formulation for a Single layer 4 2-2 2ⅹ2 Matrix Method for a Multilayer Structure 7 2-3 Transmittance and reflectance 9 Chapter 3 Transmission Properties in a Usual One-dimensional Photonic Crystal in the Presence of Evanescent Wave 3-1 Introduction 11 3-2 Numerical results and discussion 12 3-3 Conclusion 16 References 16 Chapter 4 Analysis of Multichannel Double-polarization Filter with Evanescent Wave 4-1 Introduction 18 4-2 Results and Discussion 18 4-3 Conclusion 22 References 16 Chapter 5 Use of Frustrated Total Internal Reflection to Design a Beam Splitter Based 5-1 Introduction 23 5-2 Results and Analysis 24 References Chapter 6 Conclusions 29

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