• Acta Photonica Sinica
  • Vol. 45, Issue 3, 319002 (2016)
NIU Kai-kun1、*, WANG Li-hua1, HUANG Zhi-xiang1, WU Bo1, KUANG Xiao-jing1, and WU Xian-liang1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/gzxb20164503.0319002 Cite this Article
    NIU Kai-kun, WANG Li-hua, HUANG Zhi-xiang, WU Bo, KUANG Xiao-jing, WU Xian-liang. Band Structure of Triangular Lattices Photonic Crystals with Lossy and Dispersive Materials[J]. Acta Photonica Sinica, 2016, 45(3): 319002 Copy Citation Text show less
    References

    [1] NODA S, CHUTINAN A, IMADA M. Trapping and emission of photons by a single defect in a photonic bandgap structure[J]. Nature, 2000, 407(6804): 608-610.

    [2] PAINTER O, LEER K, SCHERER A, et al.Two-dimensional photonic band-gap defect mode laser[J]. Science, 1999, 284(11): 1819-1821.

    [3] FANS H, JOHNSONS G, JOANNOPOULOSJ D, et al. Waveguide branches in photonic crystals[J]. Optical Society of America B, 2001, 18(2): 162-165.

    [4] NIU Kai-kun, LI Xue-wei, ZHANG Jun-long, et al. Restoring Casimir force between doped silicon slab and metamaterials[J]. Acta Photonica Sinica, 2014, 43(11): 1116003.

    [5] DAVANCOM, URZHUMOV Y, SHVETS G. The complex bloch bands of a 2D plasmonic crystal displaying istropic negative refraction[J]. Optics Express, 2007, 15(15): 9681-9691.

    [6] GUO S P, WU F, SACHARIA A, et al. Photonica band gap analysis using finite-difference-frequency-domain method[J]. Optics Express, 2004, 12(8): 1741-1746.

    [7] QIU M, HES L. Large complete band gap in two-dimensional photonic with elliptic air holes[J]. Physical Review B, 1999, 60(15): 10610-10612.

    [8] BOTTENL C, ASATRYANA A, LANGTRYT N, et al. Semianalytic treatment for propagation in finite photonic crystal waveguides[J]. Optics Letters, 2003, 28(10): 854-856.

    [9] LIZ Y, LINL L. Photonic band structures solved by a plane-wave-based transfer-matrix method[J]. Phycical Review E, 2003, 67(4): 046607.

    [10] HUANGK C, BIENSTMANP, JOANNOPOULOSJ D, et al. Field expulsion and reconfiguration in polaritonic photonic crystals[J].Physical Review Letters, 2003, 90(19): 196402-196405.

    [11] ZHU Z, BROWNT G. Full-vectorial finite-difference analysis of microstructured optical fibers[J].Optics Express,2002, 10(17): 853-864.

    [12] SHIS Y, CHENC H, PRATHERD W. Revised plane wave method for dispersive material and its application to band structure calculations of photonic crystal slabs[J].Applied Physics Letters, 2005, 86(4): 043104.

    [13] JIANG B, ZHOU W J, CHEN W, et al.Improved plane-wave expansion method for band structure calculation of metal photonic crystal[J]. Chinese Physics Letters, 2011, 28(3): 034209.

    [14] JIANG B, ZHOU W J, LIU A J, et al. Improved combined wave number eigenvalue equations method for band structure calculations of metal photonic crystal[J]. Optics Communications, 2012, 285(7): 1859-1863.

    [15] HUANG Z X, KOSCHNY T, SOUKOULIS C M, Theory of pump-probe experiments of metallic metamaterials coupled to a gain medium[J]. Physical Review Letters, 2012, 108(18): 187402.

    [16] WEI Yuan, XIAO Feng, HUANG Zhi-xiang, et al. Thin-film solar cell′s characteristic with periodic structure based on FDFD method[J]. Acta Photonica Sinica, 2014, 43(1): 0131001.

    [17] CHRIS F, YAROSLAV U, GENNADY S. Complex k band diagrams of 3D metamaterical/photonic crystal[J]. Optics Express, 2011, 19(20):19027-19041.

    [18] JOANNOPOULOSJ D, JOHNSONS G, WINN J N, et al.Photonic crystals molding the flow of light[M]. Princeton: Princeton University Press, 2008, 76-77.

    [19] WANG Hui, SHA Wei, HUANG Zhi-xiang, et al. A novel eigenvalue method for calculating the band structure of lossy and dispersive photonic crystals[J]. Acta Physica Sinica, 2014, 63(18): 184210.

    [20] Foundation item: The National Natural Science Foundation of China (Nos.61101064, 51277001, 61471001), the Doctoral Fund Ministry of Education of China(No.20123401110009), the Natural Science Foundation of Anhui Province (Nos.KJ2012A013, 1508085JGD03, 1508085QF130), and the New Century Excellent Talents Ministry of Education(NCET-12-0596) of China

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    NIU Kai-kun, WANG Li-hua, HUANG Zhi-xiang, WU Bo, KUANG Xiao-jing, WU Xian-liang. Band Structure of Triangular Lattices Photonic Crystals with Lossy and Dispersive Materials[J]. Acta Photonica Sinica, 2016, 45(3): 319002
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