Photonic band gap in different spatial structures of two-dimensional amorphous photonic materials

被引:0
|
作者
Hang, S
Meng, X
Jin, C
Cheng, B
Zhang, D
机构
[1] Chinese Acad Sci, Inst Phys, Opt Phys Lab, Beijing 100080, Peoples R China
[2] Chinese Acad Sci, Ctr Condensed Matter, Beijing 100080, Peoples R China
关键词
SPONTANEOUS-EMISSION; WAVE-GUIDES; CRYSTALS; TRANSMISSION; DEFECT;
D O I
暂无
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Photonic gaps of two-dimensional amorphous photonic materials consisting of different dielectric basic units are simulated by using the multiple scattering method. Even though all of these amorphous photonic materials have only short-range dielectric order, they still possess a photonic band gap. When the basic unit is made of dielectric cylinders, the S-wave gap exists, and when the number of cylinders in the basic units increases, a second gap may open. However, if it is constructed by air holes and a connecting dielectric background, we obtain both the S- and P-wave gaps. The positions and widths of these gaps in amorphous materials are close to the corresponding values in the periodic structure. Our results give further confirmation that shortrange order is one of the major causes of formation of the photonic gap.
引用
收藏
页码:1360 / 1364
页数:5
相关论文
共 50 条
  • [31] Larger absolute photonic band gap in two-dimensional air-silicon structures
    Marsal, LF
    Trifonov, T
    Rodríguez, A
    Pallarés, J
    Alcubilla, R
    PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2003, 16 (3-4): : 580 - 585
  • [32] Asymptotic analysis of dispersion characteristics in two-dimensional metallic photonic band gap structures
    Smirnova, Evgenya I.
    Chen, Chiping
    Journal of Applied Physics, 2003, 93 (10 1): : 5859 - 5865
  • [33] Transmission and absorption properties of two-dimensional metallic photonic-band-gap materials
    Li, LM
    Zhang, ZQ
    Zhang, XD
    PHYSICAL REVIEW B, 1998, 58 (23): : 15589 - 15594
  • [34] Emulation of two-dimensional photonic crystal defect modes in a photonic crystal with a three-dimensional photonic band gap
    Povinelli, ML
    Johnson, SG
    Fan, SH
    Joannopoulos, JD
    PHYSICAL REVIEW B, 2001, 64 (07):
  • [35] Properties of the band gap of two-dimensional plasma photonic crystals
    Liu, Jian-xiao
    Yang, Ze-kun
    Yang, Hong Wei
    Xi, Qing-kui
    Li, Ai Ping
    You, Xiong
    JOURNAL OF RUSSIAN LASER RESEARCH, 2013, 34 (03) : 262 - 266
  • [36] Complete photonic band gap in a two-dimensional chessboard lattice
    Agio, M
    Andreani, LC
    PHYSICAL REVIEW B, 2000, 61 (23): : 15519 - 15522
  • [37] Two-dimensional metallodielectric photonic crystal with a large band gap
    Jin, CJ
    Cheng, BY
    Man, BY
    Zhang, DZ
    Ban, SZ
    Sun, B
    Li, LM
    Zhang, XD
    Zhang, ZQ
    APPLIED PHYSICS LETTERS, 1999, 75 (09) : 1201 - 1203
  • [38] Two-dimensional metallodielectric photonic crystal with a large band gap
    Jin, Chongjun
    Cheng, Bingying
    Man, Baoyuan
    Zhang, Daozhong
    Ban, Shouzheng
    Sun, Bo
    Li, Lieming
    Zhang, Xiangdong
    Zhang, Zhaoqing
    Applied Physics Letters, 75 (09):
  • [39] Properties of the band gap of two-dimensional plasma photonic crystals
    Jian-xiao Liu
    Ze-kun Yang
    Hong Wei Yang
    Qing-kui Xi
    Ai Ping Li
    Xiong You
    Journal of Russian Laser Research, 2013, 34 : 262 - 266
  • [40] Dispersion Characterization of Dielectric Two-dimensional Photonic Band Gap
    Lei, Yu-Lu
    Zhang, Zi-Wen
    Du, Chao-Hai
    2024 INTERNATIONAL CONFERENCE ON MICROWAVE AND MILLIMETER WAVE TECHNOLOGY, ICMMT, 2024,