博碩士論文 89236009 詳細資訊




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姓名 許政義(Cheng-Yi Hsu)  查詢紙本館藏   畢業系所 光電科學研究所碩士在職專班
論文名稱 光子晶體耦合濾波器之研究
(Photonic coupling filter)
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摘要(中) 在光子晶體迴路中,波導與濾波元件為整個迴路最主要的基本元件。傳統上,由於波導與濾波元件的設計概念是各別獨立的,因此對應的元件大小與空間上的放置也是各自獨立,而使得整個迴路的體積也相對較大。在本論文中,我們探討如何將波導與共振腔結合在一起,以設計出一種具有濾波功能的光子晶體波導。根據耦合理論,特定的共振腔幾何架構設計可以篩選出特定的頻率。由於共振腔可結合在光子晶體波導之中,因此可大大地降低整個迴路的體積。本論文中所採用的數值模擬方法為平面展開法與多重散射法,藉由上述的方法,我們可以快速地得到光子晶體共振腔的特徵頻率,以及光子晶體波導的穿透率。為了達到高效率的濾波效果,我們對光子晶體共振腔與波導結構之間的連接結構作最佳化的分析。從模擬的結果顯示,在共振腔週圍的結構作微調可以有效地提昇濾波效果,而在多個共振腔組合的結構下,可將濾波後的頻譜平坦化。
摘要(英) Waveguides and filters are the essential building blocks in constructing photonic crystal circuits. Traditionally, the designing rules and hence the arrangement of these two kinds of devices in the photonic circuit are unrelated, therefore, the feature size of the whole circuit structure cannot be reduced much. In this thesis, based on the coupling effect between waveguide modes and cavity modes, we design the waveguide-filter structures that consist of several waveguides and cavities embedded in the two-dimensional photonic-crystal background. According to the coupled-mode theory, waveguide-filter structures can be designed to filter waves of specific frequencies by appropriately choosing the parameters such as the locations and sizes of the cavities and their distances to the waveguides. Since the cavities are embedded in the photonic crystal background, the feature size of the whole photonic circuitry can be reduced dramatically. The numerical simulation methods we used in this thesis are the plane wave expansion method and multiple scattering method. Utilizing these two methods, the eigen-frequencies of the cavities can be determined and the transmissions of the waveguides can be obtained. In order to achieve the highest filter efficiency, we optimize the structure by appropriately tuning the parameters of the cavities and waveguides. The results reveal that tuning the surrounding structures of the cavities can improve much of the efficiency of the filter. Besides, the throughput spectrum can be made smoother by using the multi-cavity structure.
關鍵字(中) ★ 光子晶體波導
★ 共振腔
★ 頻率選擇濾波器
★ 解多工器
★ 耦合理論
關鍵字(英) ★ demultiplexer
★ cavity
★ waveguide
★ photonic crystal
★ drop filter
論文目次 中文摘要 ------------------------------------------------Ⅰ
英文摘要 ------------------------------------------------Ⅱ
致謝 ------------------------------------------------Ⅲ
目錄 ------------------------------------------------Ⅳ
圖目錄 ------------------------------------------------Ⅵ
表目錄 ------------------------------------------------Ⅷ
第一章 緒論---------------------------------------------1
第二章 光子晶體的理論與分析方法-------------------------3
2-1 光子晶體介紹-------------------------------------3
2-2 二維光子晶體分析之平面波展開法-------------------5
2-2-1 二維平面波之波動方程式---------------------------5
2-2-2 平面波展開法-------------------------------------8
2-3 多重散射法--------------------------------------10
2-4 多重散射法中能流的計算--------------------------15
第三章 光子晶體波導與共振腔----------------------------17
3-1 光子晶體能帶回顧--------------------------------17
3-2 光子晶體波導與共振腔----------------------------18
3-3 共振腔耦合--------------------------------------22
3-4 通道選擇濾波器----------------------------------24
第四章 耦合濾波器的理論架構----------------------------27
4-1 單一共振腔單模態濾波器--------------------------27
4-2 單一共振腔雙模態濾波器--------------------------31
4-3 兩個共振腔各自支援單一模態----------------------35
第五章 數值模擬結果與討論------------------------------39
5-1 解多工器----------------------------------------39
5-2 雙共振腔的耦合濾波器----------------------------44
5-3 高階耦合濾波器----------------------------------47
5-4 波長選擇反射面耦合濾波器------------------------53
第六章 結論--------------------------------------------57
參考資料 ------------------------------------------------60
參考文獻 [1] 蔡雅芝﹐物理雙月刊﹐二十一卷四期﹐pp. 445-450﹐Aug. 1999.
[2] Sajeev John﹐“Strong localization of photons in certain disordered dielectric superlattices”,Physical Review Letters﹐Vol. 58﹐2486﹐1987.
[3] Eli Yablonovitch, “Inhibited Spontaneous Emission in Solid-State Physics and Electronics”, Physical Review Letters﹐Vol. 58﹐2059﹐1987.
[4] Charles Kittel﹐“Introduction to Solid State Physics”Charles Kittel ﹐John Wiley﹐and Sons﹐1996.
[5] Georeg B. Arfken﹐Has J. Weber﹐“Mathematical Methods for Physicists”﹐ACADEMIC﹐1966.
[6] M. Tokushima﹐H. Kosaka﹐A. Tomita﹐and H. Yamada﹐“Lightwave propagation through a sharply bent single-line-defect photonic crystal waveguide”﹐App. Phys. Let. ﹐Vol. 76﹐pp. 952, 2000.
[7] Wang Zhi﹐Ren Guobin﹐Lou Shuqin﹐and Jian Shuisheng﹐“Supercell lattice method for photonic crystal fibers ”﹐OPTICS EXPRESS﹐Vol.11﹐pp. 980-991,2003.
[8] Pierre R. Villeneuve﹐Shanhui Fan﹐and J. D. Joannopoulos﹐“Microcavities in photonic crystals:Mode symmetry﹐tunability﹐and coupling efficiency ”﹐Physical Review B﹐Vol.54﹐pp. 7837-7842﹐September 1996.
[9] Marion Thornton﹐“Classiacal dynamics ”﹐Harcourt College ﹐1995.
[10] Steven G. Johnson﹐Attial Mekis﹐Shanhui Fan﹐and J. D. Joannopoulos﹐“Molding the Flow of Light”﹐Computing in Science & Engineering﹐pp. 38-47﹐November/December 2001.
[11] Shanhui Fan﹐P. R. Villeneuve﹐J. D. Joannopoulos﹐and H. A. Haus ﹐“Channel drop filters in photonic crystals”﹐Optics Express﹐Vol.3﹐pp. 4-11﹐July 1998.
[12] C. Manolatou﹐M. J. Khan﹐Shanhui Fan﹐Pierre R. Villeneuve﹐H. A. Haus﹐Life Fellow﹐IEEE﹐and J. D. Joannopoulos﹐“Coupling of Modes Analysis of Resonant Channel Add Drop Filters”﹐IEEE Journal of Quantum Electronics﹐Vol.35﹐pp. 1322-1331﹐September 1999.
[13] H.A. Haus﹐“Wave and field in Optoelectronics”﹐Englewood Cliffs﹐NJ:Prentics-Hall﹐1984.
[14] Chongjun Jin﹐Shouzhen Han﹐Xiaodong Meng﹐Bingying Cheng﹐and Daozhong Zhang﹐“Demultiplexer using directly resonant tunneling between point defects and waveguides in a photonic crystal”﹐Journal of Applied Physics﹐Vol.91﹐pp. 4771-4773﹐April 2002.
[15] Dongsoo Park﹐Sangin Kim﹐Ikmo Park﹐and Hanjo Lim﹐“Higher Order Optical Resonant Filters Based on Coupled Defect Resonators in Photonic Crystals”﹐IEEE﹐Vol.23﹐pp. 1923-1928﹐May 2005.
[16] Shanhui Fan﹐Pierre R. Villeneuve﹐and J. D. Joannopoulos﹐“Channel Drop Tunneling through Localized States” ﹐Physical Review Letters﹐Vol.80﹐pp. 960-963﹐February 1998.
[17] Zhi-Yuan Li﹐* Hong-Yi Sang﹐Lan-Lan Lin﹐and Kai-Ming Ho﹐“Evanescent-wave-assisted wideband continuous tenability in photonic crystal channel-drop filters”﹐Physical Review B﹐Vol.72﹐pp. 1-4﹐July 2005.
[18] Shanhui Fan﹐Pierre R. Villeneuve﹐J. D. Joannopoulos﹐M. J. Khan﹐C. Manolatou﹐and H. A. Haus﹐“Theoretical analysis of channel drop tunneling processes” ﹐Physical Review B﹐Vol.59﹐pp. 882-892﹐June 1999.
[19] Wei Jiang﹐“Study of photonic crystal based waveguide and channel drop filter and localization of light in photonic crystal”﹐Institute for Fusion Studies and Department of Physics﹐University of Texas﹐Austin﹐TX78712﹐May 2000.
[20] Honglian Ren﹐Chun Jiang﹐Weisheng Hu﹐Mingyi Gao﹐and Jingyuan Wang﹐“Photonic crystal channel drop filter with a wavelength-seletive reflection micro-cavity”﹐Optics Express﹐Vol.14﹐pp. 2446-2458﹐March 2006.
[21] M. M. Sigalas﹐C. A. Flory﹐and C. Wilson﹐“Add-drop photonic crystals filters”﹐Proc. of SPIE﹐Vol. 4640﹐2002.
[22] 欒丕綱,陳啟昌,《光子晶體—從蝴蝶翅膀到奈米光子學》,五南圖書出版公司,台灣,2005.
指導教授 欒丕綱(Pi-Gang Luan) 審核日期 2007-7-11
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