研究生: |
林俊民 Chun-Min Lin |
---|---|
論文名稱: |
理想液晶極化分光計調控經由週期光柵電極之均勻電場 The Polarized Beam Splitter from an Ideal Liquid Crystal Generated by a Uniform Electric Field through Patterned Electrodes |
指導教授: |
陳皇銘
Huang-Ming Philip Chen 呂助增 Juh-Tzeng Lue |
口試委員: | |
學位類別: |
碩士 Master |
系所名稱: |
電機資訊學院 - 光電工程研究所 Institute of Photonics Technologies |
論文出版年: | 2007 |
畢業學年度: | 95 |
語文別: | 英文 |
論文頁數: | 58 |
中文關鍵詞: | 液晶光柵 、繞射光柵 、液晶極化分光計 |
外文關鍵詞: | LC grating, polarized beam splitter, diffraction devices |
相關次數: | 點閱:3 下載:0 |
分享至: |
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
近年顯示科技領域發展,液晶光學研究及各式液晶材料合成進步,更加廣泛應用在於顯示科技,而不僅是在顯示方面,更應用於光電元件,在此研究我們提出一種元件結構是經由兩片週期線條ITO玻璃對位重疊製成空cell,因而形成ITO區塊與非ITO區塊週期交錯,並灌入液晶來製程可調控式液晶光柵,利用週期光柵電極產生之均勻電場調控液晶排列,因而形成所謂 Binary phase grating,進而達到應用於極化分光計
此實驗使用正負型兩種類型液晶材料(E7、MJ041937)灌入此架構,對於負型液晶材料(MJ041937)而言,繞射效率 和 分別可達到1~2% 和40%,而對於正型液晶(E7)而言 和 分別為0.1%~0.5% 和40%。幾年來利用液晶製程光柵方法提出許多,比較其眾多方法及不同材料利用,此液晶光柵具有當程度優勢,兼具有無散射效果、非繞射效果(無加電壓狀態)、低電壓操作廣波長範圍(正型液晶E7)及維持任何入射偏振方向在非操作狀態(負型液晶MJ041937)
A PBS from an idea LC was demonstrated by the structure with double-sided patterned electrodes biased by a uniform electric field. The binary phase grating was formed by two periodically arranged indium-tin-oxide (ITO) stripes. Adjusting the applied voltage, the orientation of LC molecules was controlled by the patterned ITO electrodes and resulting with a phase difference occurring between two domains embodying in achieving applications for diffractive devices.
In this work, E7 and MJ041937 (VA) liquid-crystal materials were prepared. For MJ041937 (VA), diffraction efficiencies of the zero and the first order were performed with results of 1~2% and 40% respectively. Whereas, for E7, diffraction efficiencies of the zero and the first order are 0.1%~0.5% and 40% respectively. However, these devices demonstrate advantages of no scattering, and no diffraction during no applying voltage, a spread selection in input wavelengths, low voltages and retaining the original polarization without applying field for MJ041937 (VA)
[1] Takeyuki, Ajito Takashi Obi, Masahiro Yamaguchi, Nagaaki Ohyama, Opt. Eng. 38(11) (1999)
[2] Alexander Parfenov, APPLIED OPTICS Vol. 38, No. 26 (1999)
[3] Jae-Hong Park, Chang-Jae Yu, Jinyool Kim, Sung-Yeop Chung, and Sin-Doo Lee, Appl. Phys. Lett., Vol. 83, No. 10 (2003)
[4]E. Hasman, Z. Bomzon, A. Niv, G. Biener, and V. Kleiner, Opt. Commun.209, 45 (2002)
[5] Darius Subacius, Jay E. Stockley and Steven A. Serati, SPIE Proceedings, Volume 3778 (1999)
[6] Sang Hwa Kim and Liang-Chy Chien, OPTICS EXPRESS Vol. 12, No. 7 (2004)
[7] Shin Matsumoto, George Kawamura, JOURNAL OF APPLIED PHYSICS 99, 113709 (2006)
[8] Kanbe, H. Inoue, A. Mizutome, Y. Hanyuu, K. Katagiri, S. Yoshihara, Ferroelectrics, 114(1-4), 3 (1991)
[9] N. Yamada, S. Kohzaki, F. Funada, K.Awane, SID Digest of Technical Papers, pp.575-578 (1995)
[10] Y. Ji, J. Francl, W. J. Fritz, P. J. Bos, and J. L. West, SID Digest of Technical Papers, 611 (1996).
[11] W.T. He, T. Nose and S. Sato, Jpn. J. Appl. Phys. 37, pp.4066-4069 (1998)
[12] Scott J. Woltman, James N. Eakin, and Gregory P. Crawford, OPTICS LETTERS Vol. 31, No. 22 (2006)
[13] Pao-Tai Lin, Xiao Liang, Hongwen Ren, and Shin-Tson Wu, Appl. Phys. Lett., Vol. 85, No. 7 (2004)
[14] Gregory P. Crawford, James N. Eakin, Marc D. Radcliffe, Andrew Callan-Jones and Robert A. Pelcovits, JOURNAL OF APPLIED PHYSICS 98, 123102 (2005)
[15] James N. Eakin, Yunhe Xie, Robert A. Pelcovits, Marc D. Radcliffe, Gregory P. Crawford, Appl. Phys. Lett., Vol. 85, No. 10 (2004)
[16] Hyunhee Choi and J. W. Wu, Hye Jeong Chang, Byoungchoo Park, APPLIED PHYSICS LETTERS 88, 021905 (2006)
[17] Andy Y.-G. Fuh, L.-C. Chien, J. Appl. Phys. 83 (2) (1998)
[18] G. Cipparrone, A. Mazzulla, and G. Russo, Appl. Phys. Lett., Vol. 78, No. 9 (2001)
[19] Suraj P. Gorkhali, Robert A. Pelcovits, APPLIED PHYSICS LETTERS 88, 251113 (2006)
[20] Z. Sekkat and M. Dumont, Synth. Met. 54, 373 (1993)
[21] Manuel Bouvier Toralf Scharf, Opt. Eng. 39(8) (2000)
[22] C. V. Brown, Em. E. Kriezis, and S. J. Elston, J. Appl. Phys., Vol. 91, No. 6. (2002)
[23] J. Chen, P. J. Bos, H. Vithana, and D. L. Johnson, Appl. Phys. Lett. 67 (18). (1995)
[24] C. W. Lin, Y. Y. Tsai, K. G. PaniKumar, H. M. Philip Chen, SID’06 Digest, 170 (2006)
[25] Boris Apter, Uzi Efron, and Eldad Bahat-Treidel, APPLIED OPTICS, Vol. 43, No. 1 (2004)
[26] C. M. Titus and J. R. Kelly, OPTICS LETTERS, Vol. 26, No. 15 (2001)
[27] Xu Wanga, Daniel W. Wilsonb, Richard E. Muller, Paul D. Maker, Demetri Psaltisa, SPIE Vol. 3468 (1998)
[28] Jay Stockley, Xiaowei Xia, Teresa Ewing, and Steve Serati, MRS Proceedings, Volume 709 (2001)
[29] Jeffrey A. Davis and Jingo Adachi, OPTICS LETTERS, Vol. 26, No. 9 (2001)
[30] Jeffrey A. Davis and Jingo Adachi, OPTICS LETTERS, Vol. 29, No. 13 (2004)
[31] David Dunmur, Atsuo Fukuda, Geoffery Luckhurst, Physical properties of liquid crystals: Nematic
[32] F. Bruyneel, H.D. Smet, J. Vanfleteren, A.V.Calster, Opt. Eng., 40(2), 259 (2001)
[33] Ebru A. B□y□ktanir, Maxim Mitrokhin, B□rre Holter, Anatoliy Glushchenko, APPLIED PHYSICS LETTERS 89, 031101 (2006)
[34] N. Gheorghiu, J. L. West, and A. V. Glushchenko, M. Mitrokhin, APPLIED PHYSICS LETTERS 88, 263511 (2006)