A flexible design for one-dimensional photonic crystals with controllable photonic bandgap width

被引:8
|
作者
Bananej, A. [1 ]
Hamidi, S. M. [2 ]
Li, W. [3 ]
Li, C. [3 ]
Tehranchi, M. M. [2 ,4 ]
机构
[1] NSTRI, Laser & Opt Sch, Tehran, Iran
[2] GC Shahid Beheshti Univ, Laser & Plasma Res Inst, Tehran, Iran
[3] Harbin Inst Technol, Dept Phys, Harbin 150006, Peoples R China
[4] Shahid Beheshti Univ Med Sci, Dept Phys, Tehran, Iran
关键词
photonic crystals; photonic bandgap; equivalent multilayer structure; effective optical contrast ratio; relative bandwidth;
D O I
10.1016/j.optmat.2007.11.028
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We propose a flexible design for one-dimensional photonic crystals (1D-PCs) with controllable bandgap width which based on the two refractive index mediums. In this structure, each of the low index layers replaced by equivalent three-layers which consist of the same applicable and compatible materials of the basic structure but different fractional optical thicknesses. When decreasing the effective optical contrast ratio of the medium (the ratio of the high refractive to effective refractive index) less than its ordinary value, the relative bandwidth of the 1D-PCs can be changed continuously to any desired value. As an example, for the medium made of TiO2 and SiO2 as the high and low refractive index, and using the concept of symmetric three-layers structure, the results demonstrate that when the effective optical contrast ratio adjusted from 1.61 to less than 1.07, the relative bandwidth (Delta omega/omega(0)) of the photonic bandgap (PBG) can be varied continuously (from 0.30 to less than 0.04). (c) 2007 Elsevier B.V. All rights reserved.
引用
下载
收藏
页码:1822 / 1827
页数:6
相关论文
共 50 条
  • [1] Numerical Design for the Photonic Bandgap of One-dimensional Photonic Crystals
    Gao, Tantan
    Yuan, Jianhua
    MATERIALS FOR ENVIRONMENTAL PROTECTION AND ENERGY APPLICATION, PTS 1 AND 2, 2012, 343-344 : 166 - 171
  • [2] Omnidirectional photonic bandgap in one-dimensional photonic crystals containing hyperbolic metamaterials
    Lu, Guang
    Zhou, Xiachen
    Zhao, Yunpeng
    Zhang, Kaiyuan
    Zhou, Haiyang
    Li, Junyang
    Diao, Chao
    Liu, Fen
    Wu, Ailing
    Du, Guiqiang
    OPTICS EXPRESS, 2021, 29 (20) : 31915 - 31923
  • [3] Photonic bandgap properties of one-dimensional superconducting photonic crystals containing metamaterials
    Wu Ji-Jiang
    Gao Jin-Xia
    ACTA PHYSICA SINICA, 2013, 62 (12)
  • [4] One-dimensional photonic bandgap optical limiter design
    Soon, BY
    Haus, JW
    Scalora, M
    Sibilia, C
    Eloe, P
    PHYSICS AND SIMULATION OF OPTOELECTRONIC DEVICES XI, 2003, 4986 : 142 - 152
  • [5] Tunability of the Terahertz Bandgap of One-dimensional Microplasma Photonic Crystals
    Yang L.
    Chen Y.
    Wu S.
    Liu X.
    Ouyang F.
    Zhang C.
    Gaodianya Jishu/High Voltage Engineering, 2021, 47 (03): : 865 - 875
  • [6] Mechanical Control of the Optical Bandgap in One-Dimensional Photonic Crystals
    Stinson, V. Paige
    Shuchi, Nuren
    McLamb, Micheal
    Boreman, Glenn D. D.
    Hofmann, Tino
    MICROMACHINES, 2022, 13 (12)
  • [7] Tunable and omnidirectional photonic bandgap properties of one-dimensional photonic crystals fabricated by holography
    Wang, GP
    Yi, YX
    Lin, WH
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2004, 21 (03) : 554 - 561
  • [8] One-dimensional controllable photonic crystal
    Dzedolik, Igor V.
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2007, 24 (10) : 2741 - 2745
  • [9] Properties of photonic bandgap in one-dimensional multicomponent photonic crystal
    Zhang Yi
    Wang Qi
    OPTOELECTRONICS LETTERS, 2006, 2 (01) : 44 - 47
  • [10] Properties of photonic bandgap in one-dimensional mutlicomponent photonic crystal
    Yi Zhang
    Qi Wang
    Optoelectronics Letters, 2006, 2 (1) : 44 - 47