• Chinese Journal of Quantum Electronics
  • Vol. 21, Issue 5, 555 (2004)
[in Chinese]1、*, [in Chinese]1, [in Chinese]2, and [in Chinese]3
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • show less
    DOI: Cite this Article
    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Progress in the study of photonic crystal[J]. Chinese Journal of Quantum Electronics, 2004, 21(5): 555 Copy Citation Text show less
    References

    [1] Yablonovitch E.Inhibited spontaneous emission in solid-state physics and electronics [J].Phys.Rev.Lett.,1987,58:2059-2062.

    [2] John S.Strong localization of photonics in certain disordered dielectric super lattices [J].Phys.Rev.Lett.,1987,58:2486-2489.

    [4] Lei X Y,Li H,Ding F,et al.Novel application of a perturbed photonic crystal:high-quality filter [J].Appl.Phys.Lett.,1997,71:2889-2891.

    [7] Lou S,et al.Effect of absorption on photonic band gap [C]∥ SPIE,2001,4595:174-182.

    [8] Yablonovitch E.Photonic band-gap structures.J.Opt.Soc.Am B.1993,10:283-295.

    [9] Scalora M,Bloemer M J,Pethel A S,et al.Transparent metallo-dielectric,one-dimensional phoonic band gap structures [J].J.Appl.Phys.,1998,83:2377-2383.

    [10] John S.Localization of light [J].Physics Today,1990,4(5):32-34.

    [11] McCall S L,et al.Microwave localization by two-dimensional random scattering [J].Nature,1991,354:53-54.

    [12] Felbacg D,Gurzal B,Zblla F.Ultra-refraction in bragg mirrors [J].J.Opt.A:Pure.Appl.Opt.,2000,2:39-32.

    [13] Dowling J P,Scalora M,et al.The photonic band edge laser:a new approach to gain enhancement [J].J Appl.Phys.,1994,75:1896-1899.

    [14] Michael F,et al.Giant birefringent optics in multilayer polymer mirrors [J].Science,2000,287:2451-2453.

    [15] Kiehue G T,Kryukov A E,Ketterson J B.A numerical study of optical second-harmonic generation in a onedimensional photonic structure [J].Appl.Phys.Lett.,1999,75(12):1676-1678.

    [16] Ho K M,Chan C T,Soukoulis.Existence of a photonic gap in periodic dielectric structure [J].Phys.Rev.Lett.,1990,65:3152-3155.

    [17] Yablonovitch E,Gmitter T J.Donor and acceptor modes in photonic baud structure [J].Phys.Rev.Lett.,1991,67:3380-3383.

    [18] McCall S L,Platzman P M.Microwave propagation in two-dimensional dielectric lattices [J].Phys.Rev.Lett.,1991,67:2017-2020.

    [19] Maradudin A A,McGurn A R.Photonic band structure of a truncated,two-dimensional,periodic dielectric medium [J].J.Opt.Soc.Am.,1993,B10:307-313.

    [20] Lidorikis E,Sigalas M M,et al.Tight-binding parametrization for photonic band gap materials [J].Phys.Rev.Lett.,1998,81:1045-1048.

    [21] Sailor W C,Mueller F M.Augmented-plane-wave method for photonic bang-gap materials [J].Phys.Rev.,1998,B57:8819-8822.

    [22] Kuzmiak V.Distribution of electromagnetic field and group velocities in two-dimensional periodic systems with dissipative metallic components [J].Phys.Rev.1998,B58:7230-7251.

    [23] Leung K M.Defect modes in photonic band structures:a Green's function approach using vector wannier functions [J].J.Opt.Soc.Am.,1993,B10:303-306.

    [24] Algul H G,Khazhinsky M,et al.Impurity modes from impurity dusters in photonic band structures [J].J.Phys.Condens Matter,1995,7:447-462.

    [25] Sakoda K,Shiroma H.Numerical method for localized defect modes in photonic lattices [J].Phys.Rev.,1997,B56:4830-4835.

    [26] Gao Benqing.FDTD Method [M].National Defence Industry Press,1995.

    [27] Villeneuve P R,Fan,S,Joannopoulos J D.Microcavities in photonic crystals:mode symmetry,tenability,and coupling efficiency [J].Phys.Rev.,1996,B54:7837-7842.

    [28] Fan S,et al.Guided and defect modes in dielectric waveguides [J].J.Opt.Soc.Am.,1995,B12:1267-1270.

    [29] Yang H Y.Finite difference analysis of 2-D photonic crystals [J].IEEE Trans.Microwave Theory Tech.,1996,44:2688-2693.

    [30] Mur G.Absorbing bondary conditions for the finite-difference approximation of the time-Domain electromagneticfield equations [J].IEEE Trans on Electromagnet Compat.,1981,EMC-23:374-382.

    [31] Pendry J B.Calculating photonic band structure [J].J.Phys.Condon Matter,1996,8:1085-1108.

    [32] Pendry J.B.Mackinon A.Calculation of photonic dispersion relations [J].Phys.Rev.Lett.,1992,69:2772-2775.

    [33] Sigalas M,Soukoulis C M,Economou E N,et al.Photonic band gaps and defects in two dimensions:studies of the transmission coefficient [J].Phys.Rev.1993,B48:14121-14126.

    [34] Chan C T,et al.Order-N spectral method for electromagnetic waves [J].Phys.Rev.1995,B51:16635-16642.

    [35] Li L M,Zhang Z Q and Zhang X D.Transmission and absorption properties of two-dimensional metallic photonicband-gap materials [J].Phys.Rev.,1998,B58:15589-15594.

    [36] Johnson S G,Joannopoulos J D.Block-iterative frequency-domain methods for maxwell equations in a plane wave basis [J].Opt.Exp.,2001,8:173-190.

    [37] Yablonovitch E,Gmitter T J,Leung M L.Photonic band structure:the face-centered-cubic case employing nonspherical atoms [J].Phys.Rev.Lett.,1991,67:2295-2298.

    [38] Ozbay E,et al.Micromachined millimeter-wave photonic band-gap crystal [J].Appl.Phys.Lett.,1994,64:2059-2061.

    [39] Lin S Y,Fleming J G,Hetherington D L,et al.A three-dimensional photomic crystal operating at infrared wavelengths [J].Nature,1998,394:251-253.

    [40] Fan S.Villeneuve P R,et al.Design of three-dimensional photonic crystals at submicron lengthscales [J].Appl.Phys.Lett.,1994,65:1466-1468.

    [41] Wanke M C,et al.Laser rapid prototyping of photonic band-gap microstructures [J].Science,1997,275:1284-1286.

    [42] Noda S,Yamameto N,Kobayashi H,et al.Optical properties of three-dimensional photonic crystals based on HI-Ⅴ semiconductors at infraved to near-infrared wavelengths [J].Appl.Phys.Lett.,1999,75:905-907.

    [43] Noda S.Three-dimensional photonic crystals operating at optical wavelength region [J].Phosica B,2000,279:142-149.

    [44] Campbell M,Sharp D N,Harrison M T,et al.Fabrication of photonic crystals for the visible spectrum by holographic lithography [J].Nature,2000,404:53-56.

    [45] Shoji S,Kawata S.Photo fabrication of three-dimensional photonic crystals by multibeam laser interference into a photopolymerizable resin [J].Appl.Phys.Lett.,2000,76:2668-2670.

    [46] Tarhan I I,Watson G H.Photonic band structure of fcc colloidal crystals [J].Phys,Lett.,1996,76:315-318.

    [47] Holland B T,Blanford C F,Andreas Stein.Synthesis of macroporous minerals with highly ordered threedimensional arrays of spheroidal voids [J].Science,1998,281:538-540.

    [48] Wijnhoven J E G J,Vos W L.Preparation of photonic crystals made of air spheres in titania [J].Science,1998,281:802-804.

    [49] Zakhidov A A,Baughman R H,Iqbar Z,et al.Carbon structures with three-dimensional periodicity at optical wavelengths [J].Science,1998,282:897-899.

    [50] Soshu K,Yoshinari M,Katsuhrro T,et al.Fabrication of electromagnetic crystals with a complete diamond structure by stereolithography [J].Sold State Commum,2002,121:435-439.

    [51] Cuisin C,chelnokov A,Lourtioz J M,et al.Submicrometer resolution yablonovite templates fabricated by X-ray lithography [J].Appl.Phys.Lett.,2000,77:770-772.

    [52] Toader O,John S.Proposed square spiral microfabrication architecture for large three-dimensional photonic band gap crystals [J].Science,2001,292:1133-1135.

    [53] Schilling J,Mller F,Matthias S,et al.Three-dimensional photonic crystals based on macroporous sillicon with modulated pore diametes [J].Appl.Phys.Lett.,2001,78:1180-1182.

    [54] Robertson W M,Arjavalingam G,Meade R D,et al.Measurement of photonic band structure in two-dimensional periodic dielectric array [J].Phys.Rev.Lett.,1992,68:2023-2026.

    [55] Robertson W M,Arjavalingam G,Meade R D,et al.Measurement of the photon dispersion relation in twodimensional ordered dielectric arrays [J].J.Opt.Sci.Am B,1993,10:322-327.

    [56] Vos W L,Sprik R,Blaaderen A V,et al.Strong effects of photonic band structures on the diffraction of colloida crystals [J].Phys.Rev.B,1996,53:16231-16235.

    [57] Zhang Z Q,Wong C C,Fung K K,et al.Observation of localized electromagnetic waves,in three-dimensional networks of waveguides [J].Phys.Rev.Lett.,1998,81:5540-5543.

    [58] Knight J C,Birks T A,et al.All-sillica single-mode optical fiber with photonic crystal cladding [J].Opt.Lett.,1996,21:1547-1549.

    [59] Knight J C,Birks T A,Russell P St J,et al.All-sillica single-mode optical fiber with photonic crystal claddihng:errota [J].Opt Lett.,1997,22:484-485.

    [60] Birks T A,Knight J C,Russell P St J.Endlessly single-mode photonic crystal fiber [J].Opt.Lett.,1997,22:961-963.

    [61] Knight J C,Broeng J,Birks T A,et al.Photonic band gap guidance in optical fibers [J].Science,1998,282:1476-1478.

    [62] Cregan R F,Mangan B J,Knight J C,et al.Single-mode photonic band gap guidance of light in air [J].Science,1999,285:1537-1539.

    [63] Yariv A,et al.Coupled-resonator optical waveguide:a proposal and analysis [J].Opt.Lett.,1999,24:711-713.

    [64] Fink Y,Winn J N,Fan S,et al.A dielectric omnidirectional reflector [J].Science,1998,282:1679-1682.

    [65] Abdulhalin I.Reflective phase-only modulation using one-dimensional photonic crystal [J].J Opt.A Pure.Appl.Opt.,2000,2:9-11.

    [66] Kosaka H,Kawashima T,Tomita A,et al.Photonic crystal for micro lightwave circuits using wavelength-dependent angular beam steering [J].Appl.Phys.Lett.,1999,74:1370-1372.

    [67] Foresi J S,Villeneuve P R,Ferrera J,et al.Photonic-bandgap microcavities in optical waveguides [J].Nature,1997,390:143-145.

    [68] Steven G J,Fan S,Mekis A,et al.Multipole-cancellation mechanism for hight-Q cavities in the absence of a complete photonic band gap [J].Appl.Phys.Lett.,2001,78:3388-3390.

    [69] Gupta S,Tuttle G.Infrared filters using metallic photonic band gap structures on flexible substrate [J].Appl.Phys.Lett.,1997,71:2412-2414.

    [70] Neda S,Yogiyama M,Imada M,et al.Polarization mode control of two-dimensional photonic crystal laser by unit cell structure design [J].Science,2001,293:1123-1125.

    [72] Fan S.Pierre R V,Joannopoulos J D.High extraction efficiency of spontaneous emission from slabs of photonic crystals [J].Phys.Rev.Lett.,1997,78:3294-3297.

    [73] Tocci M D,Bloemer M J.Scalova M,et al.Thin-film nonlinear optical diode [J].Appl.Phys.Lett.,1995,66:2324-2326.

    [74] Trull J,Martorell J,vilaseca R.Angular dependence of phase-matched second-harmonic generation in photonic crystal [J].J.Opt.Sci.Am B,1998,15:2581-2585.

    [75] Hattori T,Tsurumachi N.Analysis of optical nonlinearity by defect states in one-dimensional photonic crystals[J].J.Opt.Sci.Am.B,1997,14:348-351.

    [77] Kopp V I,Fan B,Vithana H K M,et al.Low-threshold lasing at the edge of A photonic stop band in cholesteric liquid crystals [J].Opt.Lett.,1998,23:1707-1709.

    [78] Steinbery A M,Chiao R Y.Subfemtosecond determination of transmission delay times for a dielectric mirror(photonic band gap) as a function of the angle of incidence [J].Phys.Rev.A,1995,51:3425-3528.

    CLP Journals

    [1] Yan Jun, Tao Jinbo, Ren Yeye, Wang Meiqing, Hu Xianchao, Wang Xiaoxiang. Study on Microstructure and UV-Vis Spectra Characteristics of Natural-Color Golden Seawater Cultured Pearl[J]. Acta Optica Sinica, 2014, 34(4): 416005

    [2] Li Qingmei, Huang Zengqiong, Zhang Gangsheng. Characterization and Theoretical Simulation of Photonic Iridescence of Nacre in Perna Viridis[J]. Acta Optica Sinica, 2012, 32(7): 730001

    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Progress in the study of photonic crystal[J]. Chinese Journal of Quantum Electronics, 2004, 21(5): 555
    Download Citation