• Laser & Optoelectronics Progress
  • Vol. 56, Issue 4, 041603 (2019)
Yaru Wang1, Lanju Liang1, Maosheng Yang1、2, Xujuan Wang1, and Yan Wang1、*
Author Affiliations
  • 1 College of Optoelectronic Engineering, Zaozhuang University, Zaozhuang, Shandong 277160, China
  • 2 College of Precision Instrument and Optoelectronics Engineering, Institute of Laser and Opto-Electronics, Tianjin University, Tianjin 300072, China
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    DOI: 10.3788/LOP56.041603 Cite this Article Set citation alerts
    Yaru Wang, Lanju Liang, Maosheng Yang, Xujuan Wang, Yan Wang. Terahertz Metamaterial Based on Controllable Electromagnetic Induced Transparency Structure[J]. Laser & Optoelectronics Progress, 2019, 56(4): 041603 Copy Citation Text show less
    Unit structure and dimension. (a) Unit structure; (b) SRR structure; (c) CW structure
    Fig. 1. Unit structure and dimension. (a) Unit structure; (b) SRR structure; (c) CW structure
    Transmission spectra of CW, SRR and SRR/CW structures
    Fig. 2. Transmission spectra of CW, SRR and SRR/CW structures
    Surface electric field distributions for three structures. (a) CW; (b) SRR; (c) SRR/CW
    Fig. 3. Surface electric field distributions for three structures. (a) CW; (b) SRR; (c) SRR/CW
    Transmission spectra under different conductivities. (a) σ=1 S/m; (b) σ=1000 S/m; (c) σ=3000 S/m; (d) σ=5000 S/m; (e) σ=7000 S/m; (f) σ=15000 S/m
    Fig. 4. Transmission spectra under different conductivities. (a) σ=1 S/m; (b) σ=1000 S/m; (c) σ=3000 S/m; (d) σ=5000 S/m; (e) σ=7000 S/m; (f) σ=15000 S/m
    Electric field distributions under different conductivities. (a) σ=1 S/m; (b) σ=10000 S/m; (c) σ=15000 S/m
    Fig. 5. Electric field distributions under different conductivities. (a) σ=1 S/m; (b) σ=10000 S/m; (c) σ=15000 S/m
    Schematic of coupled mode theory
    Fig. 6. Schematic of coupled mode theory
    Transmission spectra obtained by simulation and calculation. (a) σ=1000 S/m; (b) σ=3000 S/m; (c) σ=4000 S/m; (d) σ=5000 S/m
    Fig. 7. Transmission spectra obtained by simulation and calculation. (a) σ=1000 S/m; (b) σ=3000 S/m; (c) σ=4000 S/m; (d) σ=5000 S/m
    Relationship between electrical conductivity of silicon and each parameter
    Fig. 8. Relationship between electrical conductivity of silicon and each parameter
    Yaru Wang, Lanju Liang, Maosheng Yang, Xujuan Wang, Yan Wang. Terahertz Metamaterial Based on Controllable Electromagnetic Induced Transparency Structure[J]. Laser & Optoelectronics Progress, 2019, 56(4): 041603
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