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从20世纪80年代末提出光子晶体的概念以来,由于光子晶体独特的调节光子运动状态的特性,使其在许多领域有着广泛的用途.系统叙述了光子晶体的产生、结构、制备和应用,介绍了ZnO光子晶体的最新研究进展.

参考文献

[1] John S .Strong localization of photons in certain disordered dielectric superlattice[J].Physical Review Letters,1987,58:2486.
[2] Yablonovitch E .Inhibited spontaneous emission in solidstate physics and electronics[J].Physical Review Letters,1987,58:2059.
[3] Chang X;Cao JM;Ji HM;Fang BQ;Feng J;Pan LJ;Zhang F;Wang HY .Solvothermal synthesis of 3D photonic crystals based on ZnS/opal system[J].Materials Chemistry and Physics,2005(1):6-10.
[4] Yablonovitch E;Gmitter T J;Leung K M .Photonic band structure:the face-centered-cubic case employing nonspherical atoms[J].Applied Physics Letters,1991,67(17):2295.
[5] Seelig EW.;Tang B.;Yamilov A.;Cao H.;Chang RPH. .Self-assembled 3D photonic crystals from ZnO colloidal spheres[J].Materials Chemistry and Physics,2003(1):257-263.
[6] Rogach AL.;Kotov NA.;Koktysh DS.;Susha AS.;Caruso F. .II-VI semiconductor nanocrystals in thin films and colloidal crystals[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,2002(2/3):135-144.
[7] 许静,谢凯,龙永福,肖加余.自组装SiO2光子晶体线形阵列[J].国防科技大学学报,2005(01):5-7.
[8] 刘晓东,倪培根,程丙英,张道中.可变晶格常数乙醇-二氧化硅胶质光子晶体中的Raman散射[J].物理学报,2004(09):3059-3064.
[9] 陈红艺,郭红莲,倪培根,张琦,程丙英,张道中.聚苯乙烯微粒光子晶体的反常透过特性[J].物理学报,2003(09):2155-2158.
[10] 谢娟;邓宏;徐自强.重力自组装ZnO纳米结构的研究[J].电子元件与材料,2006
[11] 汪静,李康,钱卫平,袁春伟.垂直沉积法制备二氧化硅胶体晶体及其表征[J].东南大学学报(自然科学版),2003(02):208-210.
[12] Shelekhina V M;Prokhorov O A et al.Towards 3D photonic crystals[J].Synthetic Metals,2001,124:137.
[13] Braun P V et al.Macroporous materials-electrochemically grown photonic crystals[J].Journal of Colloid and Interface Science,2002,7:116.
[14] Rogach A L;Kotov N A;Koktysh D S et al.Towards 3D photonic crystals[J].CHEMISTRY OF MATERIALS,2001,13(06):2721.
[15] 李勃,周济,胡伟,李龙土,桂治轮.处理温度对聚合物蛋白石基光子晶体禁带的影响[J].科学通报,2002(06):409-411.
[16] 王振领,林君.蛋白石及反蛋白石结构光子晶体[J].化学通报,2004(12):876-882.
[17] 林旭彬,赵玉周,李静,胡巧燕,江绍基,蔡志岗,李宝军.反蛋白石结构光子晶体制备技术[J].人工晶体学报,2004(06):1022-1030.
[18] Su-Lan Kuai;Vo-Van Truong;Alain Hache;Xing-Fang Hu .A comparative study of inverted-opal titania photonic crystals made from polymer and silica colloidal crystal templates[J].Journal of Applied Physics,2004(11):5982-5986.
[19] 谈勇,杨可靖,曹跃霞,周蓉,陈明,钱卫平.聚苯乙烯光子晶体的制备及其在传感中的应用[J].化学学报,2004(20):2089-2092.
[20] One-dimensional photonic crystals in reflection geometry for optical applications[J].Applied physics letters,2003(6):1089-1091.
[21] Large polarization change in two-dimensional metallic photonic crystals in subterahertz region[J].Applied physics letters,2003(16):2568-2570.
[22] Hiroyuki Ichikawa;Toshihiko Baba .Efficiency enhancement in a light-emitting diode with a two-dimensional surface grating photonic crystal[J].Applied physics letters,2004(4):457-459.
[23] J. A. Oswald;B.-I. Wu;K. A. McIntosh .Dual-band infrared metallodielectric photonic crystal filters[J].Applied physics letters,2000(14):2098-2100.
[24] Du F;Lu YQ;Wu ST .Electrically tunable liquid-crystal photonic crystal fiber[J].Applied physics letters,2004(12):2181-2183.
[25] Javad Zarbakhsh;Frank Hagmann;Sergei F. Mingaleev;Kurt Busch;Kurt Hingerl .Arbitrary angle waveguiding applications of two-dimensional curvilinear-lattice photonic crystals[J].Applied physics letters,2004(23):4687-4689.
[26] Schwoob E V;Weisbuch C et al.Compact wavelength monitoring by lateraoutcoupling in wedged photonic crystal multimode waveguides[J].Applied Physics Letters,2005,86:1071.
[27] Tunable distributed feedback laser with photonic crystal mirrors[J].Applied physics letters,2003(18):2942-2944.
[28] G. Subramania;S. Y. Lin;J. R. Wendt;J. M. Rivera .Tuning the microcavity resonant wavelength in a two-dimensional photonic crystal by modifying the cavity geometry[J].Applied physics letters,2003(22):4491-4493.
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