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光子晶体是一种新概念人工结构功能材料,通过设计可以人为调控经典波的传榆.而三维光子晶体能产生全方向的完全禁带,具有更普遍的实用性.从结构、材料及应用探索3方面介绍了近几年来光学波段三维光子晶体的最新发展动向:以器件化为指导,逐步由简单媒质简单周期向复杂媒质复合周期结构方向发展,由胶体模板自组装等纯化学制备手段向物理化学方法相融合的多元技术扩展,其应用领域也由光电子器件、集成光路进一步拓展到光电对抗、光学探测、传感等.

参考文献

[1] Yablonovitch E .Inhibited spontaneous emission in solidstate physics and electronics[J].Physical Review Letters,1987,58:2059.
[2] John S .Strong localization of photons in certain disordered dielectric superlattices[J].Physical Review Letters,1987,58:2486.
[3] Yan Qingfeng;Zhao X S;Zhou Zuocheng .Fabrication of colloidal crystal heterostructues using a horizontal deposition method[J].Journal of Crystal Growth,2006,288:205.
[4] Romanov S G;Sotomayor Torres C M;Ye J et al.Light propagation in triple-film hetero-opals[J].Progress in Solid State Chem,2005,33:279.
[5] Deubel M;Wegener M;Linden S et al.3D-2D-3D photonic crystal heterostructures fabricated by direct laser writing[J].Optics Letters,2006,31:805.
[6] Fredrik Jonsson;Clivia M. Sotomayor Torres;Joerg Seekamp;Moritz Schniedergers;Anne Tiedemann;Jianhui Ye;Rudolf Zentel .Artificially inscribed defects in opal photonic crystals[J].Microelectronic engineering,2005(3):429-435.
[7] Yan Qingfeng;Zhou Zuocheng;Zhao X S .Introduction of three-dimensional extrinsic defects into colloidal photonic crystals[J].Chemistry of Materials,2005,17:3069.
[8] Masahiro Imada;Lye Hoe Lee;Makoto Okano;Shoichi Kawashima;Susumu Noda .Development of three-dimensional photonic-crystal waveguides at optical-communication wavelengths[J].Applied physics letters,2006(17):171107-1-171107-3-0.
[9] Zhong YC;Zhu SA;Su HM;Wang HZ;Chen JM;Zeng ZH;Chen YL .Photonic crystal with diamondlike structure fabricated by holographic lithography[J].Applied physics letters,2005(6):1103-1-1103-3-0.
[10] Hiromi Mori;Soshu Kirihara;Yoshinari Miyamoto .Fabrication of three-dimensional ceramic photonic crystals and their electromagnetic properties[J].Journal of the European Ceramic Society,2006,26:2195.
[11] Markus Deubel;Georg Von Freymann;Martin Wegener;Suresh Pereira;Kurt Busch;Costas M. Soukoulis .Direct laser writing of three-dimensional photonic-crystal templates for telecommunications[J].Nature materials,2004(7):444-447.
[12] Sean Wong;Markus Deubel;Sajeev John et al.Direct laser writing of three-dimensional photonic crystals with a complete photonic bandgap in chalcogenide glasses[J].Advanced Materials,2006,18:265.
[13] Nicolas Tetreault;Georg von Freymann;Markus Deubel et al.New route to three-dimensional phtotnic bandgap materials:silicon double inversion of polymer templates[J].Advanced Materials,2006,18:457.
[14] Jeong Ho Park;Won San Choi;Hye Young Koo et al.Doped colloidal photonic crystal structure with refractive index chirping to the[111] crystallographic axis[J].Langmuir,2005,22:94.
[15] Hiroyuki Yoshida;Ryotaro Ozaki;Katsumi Yoshino et al.Effect of introducing multiple chiral defects on the optical properties of cholesteric liquid crystals[J].Thin Solid Films,2006,509:197.
[16] Busch K.;John S. .Liquid-crystal photonic-band-gap materials: The tunable electromagnetic vacuum[J].Physical review letters,1999(5):967-970.
[17] Liu Chenyang;Chen Lienwen .Tunable field-sensitive polarizer using hybrid conventional waveguides and photonic crystal structures with nematic liquid crystals[J].Optics Communications,2005,256:114.
[18] Dennis McPhail;Martin Straub;Min Gu .Electrical tuning of three-dimensional photonic crystals using polymer dispersed liquid crystals[J].Applied physics letters,2005(5):051103.1-051103.3.
[19] Graugnard E;King J S;Jain S et al.Electric-field tuning of the bragg peak in large-pore Tion inverse shell opals[J].Physical Review B:Condensed Matter,2005,72:233105.
[20] Scherbakov AV.;Akimov AV.;Golubev VG.;Kaplyanskii AA.;Kurdyukov DA. Meluchev AA.;Pevtsov AB. .Optically induced Bragg switching in opal-VO2 photonic crystals[J].Physica, E. Low-dimensional systems & nanostructures,2003(1/4):429-430.
[21] Armand Rosenberg;James Shirk .Photonic crystals:intensity-dependent transmission protects sensors[J].Laser Focus World,2000,36(04):121.
[22] Saveliy F. Kaplan;Nelli F. Kartenko;Dmitry A. Kurdyukov;Alexander V. Medvedev;Valery G. Golubev .Electroluminescent three-dimensional photonic crystals based on opal-phosphor composites[J].Applied physics letters,2005(7):071108-1-071108-3-0.
[23] Yamilov A;Wu X;Cao H .Photonic band structure of ZnO photonic crystal slab laser[J].Journal of Applied Physics,2005(10):3102-1-3102-7-0.
[24] Abrarov SM;Yuldashev SU;Kim TW;Lee SB;Kwon YH;Kang TW .Effect of photonic band-gap on photoluminescence of ZnO deposited inside the green synthetic opal[J].Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter,2005(1/3):111-119.
[25] Yang Yingling;Yang Beifang;Fu Zhengping et al.Enhanced yellow-green photoluminescence from ZnO-SiO2 composite opal[J].Journal of Physics:Condensed Matter,2004,16:7277.
[26] Garcia-Martin A;Armelles G;Pereira S .Light transport in photonic crystals composed of magneto-optically active materials[J].Physical review, B. Condensed matter and materials physics,2005(20):5116-1-5116-8-0.
[27] Fredrik Jonsson;Christos Flytzanis .Nonlinear Magneto-Optical Bragg Gratings[J].Physical review letters,2006(6):063902.1-063902.4.
[28] Murzina T V;Kim E M;Kapra R V et al.Magnetophotonic crystals based on yttrium-iron-garnet infiltrated opals:magnetization-induced second-harmonic generation[J].Applied Physics Letters,2006,88:022501.
[29] Villeneuve PR.;Joannopoulos JD.;Fan SH. .MICROCAVITIES IN PHOTONIC CRYSTALS - MODE SYMMETRY, TUNABILITY, AND COUPLING EFFICIENCY[J].Physical Review.B.Condensed Matter,1996(11):7837-7842.
[30] Lei XY;Li H;Ding F;Zhang WY;Ming NB .Novel application of a perturbed photonic crystal: High-quality filter[J].Applied physics letters,1997(20):2889-2891.
[31] Fink Y;Winn J N;Fan S .A dielectric omnidirectional reflector[J].Science,1998,282:1679.
[32] Fan SH;Villeneuve PR;Joannopoulos JD;Schubert EF .High extraction efficiency of spontaneous emission from slabs of photonic crystals[J].Physical review letters,1997(17):3294-3297.
[33] Birks TA;Knight JC;Russell PS .Endlessly single-mode photonic crystal fiber[J].Optics Letters,1997(13):961-963.
[34] Kosaka H.;Tomita A.;Notomi M.;Tamamura T.;Sato T. Kawakami S.;Kawashima T. .Superprism phenomena in photonic crystals[J].Physical Review.B.Condensed Matter,1998(16):R10096-R10099.
[35] Xu Zhaochun;Wang Zhanglei;Michael E Sullivan et al.Multimodal multiplex spectroscopy using photonic crystals[J].Optics Express,2003,11:2126.
[36] Friederike Fleischhaker;Andre C. Arsenault;Zhuo Wang;Vladimir Kitaev;Frank C. Peiris;Georg von Freymann;Ian Manners;Rudolf Zentel;Geoffrey A. Ozin .Redox-Tunable Defects in Colloidal Photonic Crystals[J].Advanced Materials,2005(20):2455-2458.
[37] Andre C Arsenault;Timothy J Clark;Georg von Freymann et al.From colour fingerprinting to the control of photoluminescence in elastic photonic crystals[J].Nature Materials,2006,5:179.
[38] Li Mingzhu;Wang Jingxia;Feng Lin et al.Fabrication of tunable colloid crystals from amine-terminated polyamidoamine dendrimers[J].Colloids and Surfaces A:Physicochem Eng,2006,290(1-3):233.
[39] 乔在祥,陈文浚,杜邵梅.热光伏技术的研究进展[J].电源技术,2005(01):57-61.
[40] Lin Shawn Yu;Fleming J G;Chow E et al.Enhancement and suppression of thermal emission by a three-dimensional photonic crystal[J].Physical Review B:Condensed Matter,2000,62:2243.
[41] Three-dimensional photonic-crystal emitter for thermal photovoltaic power generation[J].Applied physics letters,2003(2):380-382.
[42] ADRIAN CHO .High-Tech Materials Could Render Objects Invisible[J].Science,2006(5777):1120-0.
[43] Schurig D;Mock JJ;Justice BJ;Cummer SA;Pendry JB;Starr AF;Smith DR .Metamaterial electromagnetic cloak at microwave frequencies[J].Science,2006(5801):977-980.
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