• Acta Optica Sinica
  • Vol. 38, Issue 2, 0216003 (2018)
Yuanyuan Cai1, Zhi Wang1、*, Xiao Chen2, Changwei Li2, Shuai Feng2, and Yiquan Wang2
Author Affiliations
  • 1 College of Science, Beijing Jiaotong University, Beijing 100044, China
  • 2 College of Science, Minzu University of China, Beijing 100081, China
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    DOI: 10.3788/AOS201838.0216003 Cite this Article Set citation alerts
    Yuanyuan Cai, Zhi Wang, Xiao Chen, Changwei Li, Shuai Feng, Yiquan Wang. Coupling Properties of Defect Modes in Organic Octagonal Quasiperiodic-Photonic-Crystals Under Low-Refractive-Index Contrast[J]. Acta Optica Sinica, 2018, 38(2): 0216003 Copy Citation Text show less
    Organic octagonal quasicrystal. (a) Schematic; (b) transmission spectrum
    Fig. 1. Organic octagonal quasicrystal. (a) Schematic; (b) transmission spectrum
    Organic octagonal quasicrystal with a 9-hole-missing defect microcavity located at center. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Fig. 2. Organic octagonal quasicrystal with a 9-hole-missing defect microcavity located at center. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Organic octagonal quasicrystal with a 9-hole-missing defect microcavity located at left side of center. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Fig. 3. Organic octagonal quasicrystal with a 9-hole-missing defect microcavity located at left side of center. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Double-defect structure composed by microcavities with 9-hole-missing defects located at center and left side. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Fig. 4. Double-defect structure composed by microcavities with 9-hole-missing defects located at center and left side. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Double-defect structure composed by microcavities with 9-hole-missing defects located on each side of its center. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Fig. 5. Double-defect structure composed by microcavities with 9-hole-missing defects located on each side of its center. (a) Schematic; (b) transmission spectrum; (c) field distributions for the corresponding defect modes
    Quadrupole mode field at 601.47 nm supported by microcavity with 9-hole-missing defects located independently at left or right side of quasicrystals. (a) Two-dimensional distributions; (b) three-dimensional distributions
    Fig. 6. Quadrupole mode field at 601.47 nm supported by microcavity with 9-hole-missing defects located independently at left or right side of quasicrystals. (a) Two-dimensional distributions; (b) three-dimensional distributions
    Yuanyuan Cai, Zhi Wang, Xiao Chen, Changwei Li, Shuai Feng, Yiquan Wang. Coupling Properties of Defect Modes in Organic Octagonal Quasiperiodic-Photonic-Crystals Under Low-Refractive-Index Contrast[J]. Acta Optica Sinica, 2018, 38(2): 0216003
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