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研究生: 王俊凱
Wang, June-Kai
論文名稱: 單負超穎材料光子晶體光學性質之研究
Optical Properties of Single-negative Metamaterial Photonic Crystals
指導教授: 吳謙讓
Wu, Chien-Jang
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: 2016
畢業學年度: 104
語文別: 中文
論文頁數: 35
中文關鍵詞: 單負材料一維光子晶體
英文關鍵詞: single-negative materials, Cantor set
DOI URL: https://doi.org/10.6345/NTNU202204282
論文種類: 學術論文
相關次數: 點閱:109下載:3
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  • 無中文摘要

    In this thesis ,we study the optical properties for the one-dimensional photonic crystals(PCs) containing the single-negative materials. We use transfer matrix method(TMM) to investigate of photonic band structure and transmittance characteristic of 1D photonic crystal. There are three photonic crystal structures in our studies. First, we consider a filter structure, (AB)N ,where A=air ,B=single-negative material and N is the stack number. Second, we consider a filter structure, the Cantor set structure , (ABABBBABABBBBBBBBBABABBBABA)N, where A=single-negative material, B=air and N is the stack number. Third ,we consider a filter structure, (AB)NC(BA)NC(AB)N , where A and B are Dielectric material , C is single-negative material N is the stack number. And we change two type of parameters to observed changing in transmittance. The parameters are stack numbers and angles of incidence .

    摘要 ...................................................................................................... i 致謝 ...................................................................................................... ii 目錄 ...................................................................................................... ii 第一章 緒論 1-1 光子晶體簡介 .......................................................................................1 第二章 單負介質光子晶體在TM波下的穿隧效應 2-1 簡介.......................................................................................................2 2-2基本方程...............................................................................................................3 2-3數值討論與結果...................................................................................................3 2-4 結論......................................................................................................................12 第三章 單負材料以CantorSet結構組成光子晶體在TM波下的共振穿隧現象 3-1 簡介......................................................................................................................13 3-2基本方程...............................................................................................................13 3-3數值討論與結果...................................................................................................14 3-4 結論......................................................................................................................25 第四章 單負材料和介電材料組成之光子晶體在TM波下的共振穿隧現象 4-1 簡介......................................................................................................................26 4-2基本方程...............................................................................................................26 4-3數值討論與結果...................................................................................................27 4-4 結論......................................................................................................................33 第五章 結論..........................................................................................34 參考文獻 ..............................................................................................35

    [1]Elliott H. Lieb and F. Y. Wu Phys. Rev. Lett. 20, 1445 – Published 17 June 1968; Erratum Phys. Rev. Lett. 21, 192 (1968)
    [2]Nature 383, 699-702 (24 October 1996)
    [3]Cell Research 25:574–587
    [4] V.G. Vesalago, Usp. Fiz. Nank 92 (1964) 517;
    [5] V.G. Vesalago, Sov. Phys. Usp. 10 (1968) 509.
    [6] J. Li, L. Zhou, C.T. Chan, P. Sheng, Phys. Rev. Lett. 90 (2003)83901.
    [7] C.G. Parazzoli, R.B. Greegor, K. Li, B.E.C. Koltenbah, M. Tanielian,Phys. Rev. Lett. 90 (2003) 107401.
    [8] K. Aydin, K. Guven, M. Kafesaki, L. Zhang, C.M. Soukoulis, E. Ozbay, Opt. Lett. 29 (2004) 2623.
    [9]Johnny Ling, University of Rochester, Rochester, NY 14627
    [10] Photonics and Nanostructures – Fundamentals and Applications 4 (2006) 123–131
    [11] P. Yeh, Optical Waves in Layered Media (Wiley, 2005)
    [12](230.0230) Optical devices; (230.4170) Multilayers; (230.5298) Photonic crystals.
    [13]S. Xu, Y. Zhu, L.Wang, P. Yang, and P. K. Chu, “Photonic quantum well composed of photonic crystal and quasicrystal,” Opt. Commun. 313, 369–374 (2014).
    [14] M. C. Larciprete, A. Belardini, R. L. Voti, and C. Sibilia, Pre-fractal multilayer structure for polarization-insensitive temporally and spatially coherent thermal emitter,” Opt.Express 21, A576–A584 (2013).
    [15]F. Chiadini, V. Fiumara, and A. Scaglione, “Transmission properties of perturbed optical Cantor multilayers,” J. Appl.Phys. 100, 023119 (2006).
    [16]J. Daintith. Biographical Encyclopedia of Scientists. CRC ress.1994: 943. ISBN 0750302879.
    [17](160.5293) Photonic bandgap materials;(230.4170) Multilayers; (310.6805) Theory and design;(160.2260) Ferroelectrics

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