• Acta Photonica Sinica
  • Vol. 43, Issue 10, 1023001 (2014)
ZHANG Juan*
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/gzxb20144310.1023001 Cite this Article
    ZHANG Juan. The Maximum Photonic Bandgap Extension of Omni-directional Reflectors Based on Cascaded One-dimensional Photonic Crystal[J]. Acta Photonica Sinica, 2014, 43(10): 1023001 Copy Citation Text show less
    References

    [1] YABLONOVITCH E. Inhibited spontaneous emission in solid-state physics and electronics[J]. Physics Review Letters, 1987, 58(20): 2059-2062.

    [2] JOHN S. Strong localization of photons in certain disordered dielectric superlattices[J]. Physics Review Letters, 1987, 58(23): 2486-2489.

    [3] KONG Xiang-kun, LIU Shao-bin, ZHANG Hai-feng, et al. Omnidirectional photonic band gap of one-dimensional ternary plasma photonic crystals[J]. Journal of Optics, 2011, 13(3): 035101.

    [4] HART S D, MASKALY G R, TEMELKURAN B, et al. External reflection from omnidirectional dielectric mirror fibers[J]. Science, 2002, 296(5567): 510-513.

    [5] NUSINSKY I, HARDY A A. Band-gap analysis of one-dimensional photonic crystals and conditions for gap closing[J]. Physical Review B, 2006, 73(12): 125104.

    [6] FAN Chun-zhen, WANG Jun-qiao, HE Jin-na, et al. Theoretical study on the photonic band gap in one-dimensional photonic crystals with graded multilayer structure[J]. Chinese Physics B, 2013, 22(7): 074211.

    [7] JIANG Li-yong, ZHENG Gai-ge, SHI Lin-xing, et al. Broad omnidirectional reflectors design using genetic algorithm[J]. Optics Communications, 2008, 281(19): 4882-4888.

    [8] ZHANG Juan, YU Shuai, GUO Sen, et al. Design of flat-top polarization filters based on one-dimensional photonic crystal theory[J]. Chinese Journal of Lasers, 2011, 38(1): 0105005.

    [9] GU Pei-yun, ZHANG Juan, ZHOU Yi. Design of multi-channel flat-top polarization filter based on aniso-tropic medium[J]. Journal of Optoelectronics·Laser, 2012, 23(6): 1043-1050.

    [10] YU Shuai, ZHANG Juan. One-dimensional film-micro-cavity structure design for an asymmetrical interleaver filter[J]. Optoelectronics Letters, 2010, 6(2): 85-88.

    [11] DEOPURA M, ULLAL C K, TEMELKURAN B, et al. Dielectric omnidirectional visible reflector[J]. Optics Letters, 2001, 26(15): 1197-1199.

    [12] CHIGRIN D N, LAVRINENKO A V, YAROTSKY D A, et al. Observation of total omnidirectional reflection from a one-dimensional dielectric lattice[J]. Applied Physics A, 1999, 68(1): 25-28.

    [13] JIANG Li-yong, ZHENG Gai-ge, SHI Lin-xing, et al. Broad omnidirectional reflectors design using genetic algorithm[J]. Optics Communications, 2008, 281(19): 4882-4888.

    [14] KAMINSKA K, ROBBIE K, Birefringent omnidirectional reflector[J]. Applied Optics, 2004, 43(7): 1570-1576.

    [15] DAI Xiao-yu, XIANG Yuan-jiang, WEN Shuang-chun, et al. Thermally tunable and omnidirectional terahertz photonic bandgap in the one-dimensional photonic crystals containing semiconductor InSb[J]. Journal of Applied Physics, 2001, 109(5): 053104.

    [16] SRIVASTAVA S K, OJHA S P. Omnidirectional reflection bands in one-dimensional photonic crystal structure using fullerene films[J]. Progress in Electromagnetics Research, 2007, 74: 181-194.

    [17] SRIVASTAVA S K, OJHA S P. Enhancement of omnidirectional reflection bands in one-dimensional photonic crystals with left-handed materials[J]. Progress in Electromagnetics Research, 2007, 68: 91-111.

    [18] WU C J, CHUNG Y H, SYU B J, et al. Band gap extension in a one-dimensional ternary metal-dielectric photonic crystal[J]. Progress in Electromagnetics Research, 2010, 102: 81-93.

    [19] WANG Xin, HU Xin-hua, LI Yi-zhou, et al. Enlargement of omnidirectional total reflection frequency range in one-dimensional photonic crystals by using photonic heterostructures[J]. Applied Physics Letters, 2002, 80(23): 4291-4293.

    [20] MANZANARES-MARTINE J, ARCHULETA-GARCIA R, CASTRO-GARAY P, et al. One-dimensional photonic heterostructure with broadband omnidirectional reflection[J]. Progress in Electromagnetics Research, 2011, 111: 105-117.

    [21] KUMAR V, KUMAR A, SINGH K H S, et al. Broadening of omni-directional reflection range by cascade 1D photonic crystal, Optoelectronics and advanced material-rapid communication[J]. Optoelectronics and Advanced Materials, 2011, 5(5): 488-490.

    [22] SUTHAR B, BHARGAVA A. Enlargement of omni-directional reflection by cascading chalcogenide based photonic crystals[J]. Optics Communications, 2012, 285(6): 1481-1485.

    [23] HAN Peng, WANG He-zhou. Criterion of omnidirectional reflection in a one-dimensional photonic heterostructure[J]. Journal of Optical Society of America B, 2005, 22(7): 1571-1575.

    [24] BORN M, WOLF E. Principles of optics[M]. 7th (expanded) ed. Cambridge: Cambridge University Press, 1999.

    CLP Journals

    [1] WEN Jian-hua, ZHANG Yang, YANG Yi-biao, DENG Xiao, FEI Hong-ming, CHEN Zhi-hui. Photonic Crystal Tunable Optical Filter Based on Air Defect Layer[J]. Acta Photonica Sinica, 2015, 44(8): 823001

    ZHANG Juan. The Maximum Photonic Bandgap Extension of Omni-directional Reflectors Based on Cascaded One-dimensional Photonic Crystal[J]. Acta Photonica Sinica, 2014, 43(10): 1023001
    Download Citation