• Laser & Optoelectronics Progress
  • Vol. 55, Issue 4, 041302 (2018)
Lufa Shen1、*, Jianping Xie1, and Zihua Wang1
Author Affiliations
  • 1 School of Communication and Information Engineering, Shanghai University, Shanghai 200072, China
  • 1 School of Science, Huzhou University, Huzhou, Zhejiang 313000, China
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    DOI: 10.3788/LOP55.041302 Cite this Article Set citation alerts
    Lufa Shen, Jianping Xie, Zihua Wang. Propagation of TE Oscillating Guided Modes in a Taper Slab Waveguide with Metamaterials[J]. Laser & Optoelectronics Progress, 2018, 55(4): 041302 Copy Citation Text show less
    Schematic of taper slab waveguide with anisotropic metamaterials
    Fig. 1. Schematic of taper slab waveguide with anisotropic metamaterials
    Influence of taper slope wavelength on dispersive of TE0 mode
    Fig. 2. Influence of taper slope wavelength on dispersive of TE0 mode
    Influence of frequency on dispersive of TE0 mode. The tape slope is 0.01 and other waveguide parameters are the same as section 4.1.1
    Fig. 3. Influence of frequency on dispersive of TE0 mode. The tape slope is 0.01 and other waveguide parameters are the same as section 4.1.1
    Influence of mode order on dispersive of TE oscillating guided modes. The taper slope equals to 0.01 and f=5.0 GHz, besides, other waveguide parameters are the same as section 4.1.1
    Fig. 4. Influence of mode order on dispersive of TE oscillating guided modes. The taper slope equals to 0.01 and f=5.0 GHz, besides, other waveguide parameters are the same as section 4.1.1
    Influence of taper slope on power flow of TE0 mode. The other corresponding waveguide parameters employed are the same as that in Fig. 3
    Fig. 5. Influence of taper slope on power flow of TE0 mode. The other corresponding waveguide parameters employed are the same as that in Fig. 3
    Influence of frequency on power propagation of TE0 mode. The slope k=0.01 and the other corresponding parameters employed are the same as that in Fig. 3
    Fig. 6. Influence of frequency on power propagation of TE0 mode. The slope k=0.01 and the other corresponding parameters employed are the same as that in Fig. 3
    Influence of mode order on power propagation of TE oscillating guided modes. The taper slope k is 0.01, frequency is 5.0 GHz, and other waveguideparameters are the same as 4.1.1
    Fig. 7. Influence of mode order on power propagation of TE oscillating guided modes. The taper slope k is 0.01, frequency is 5.0 GHz, and other waveguideparameters are the same as 4.1.1
    f /GHzmkp1p2p3p4p5p6p7p8p9
    500.018.14×10-9-6.00×10-71.84×10-5-0.0002980.00275-0.013990.040340.03371.915
    500.050.003179-0.046840.2872-0.93251.719-1.7491.0090.16851.915
    500.10.8138-5.99618.38-29.8427.5-13.994.0340.3371.915
    510.019.98×10-10-2.87×10-84.95×10-7-2.54×10-64.51×10-56.61×10-40.01780.44611.2
    520.01-6.07×10-61.39×10-5-1.23×10-57.52×10-65.01×10-50.0012920.032480.816520.53
    4.500.015.59×10-10-1.87×10-83.34×10-72.60×10-52.54×10-40.00025380.0074740.1864.694
    4.800.013.18×10-9-1.98×10-75.23×10-6-7.30×10-50.0005909-0.002440.010250.10072.693
    5.300.012.91×10-8-2.49×10-68.81×10-5-0.0016440.01735-0.10220.3126-0.35721.224
    Table 1. Some parameters for the dispersive curves fitting
    Lufa Shen, Jianping Xie, Zihua Wang. Propagation of TE Oscillating Guided Modes in a Taper Slab Waveguide with Metamaterials[J]. Laser & Optoelectronics Progress, 2018, 55(4): 041302
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