• Infrared and Laser Engineering
  • Vol. 46, Issue 8, 825003 (2017)
Du Mingdi1、2、*, Jia Yaqiong1、2, and He Shuzhen1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/irla201746.0825003 Cite this Article
    Du Mingdi, Jia Yaqiong, He Shuzhen. Impact of groove depth of subwavelength metal grating on THz spoof SPPs[J]. Infrared and Laser Engineering, 2017, 46(8): 825003 Copy Citation Text show less
    References

    [1] Kim S, Jang M S, Brar V W, et al. Electronically tunable extraordinary optical transmission in graphene plasmonic ribbons coupled to subwavelength metallic slit arrays[J]. Nature Communications, 2016, 7: 1-8.

    [2] Cao P, Cheng L, Zhang X, et al. Near-infrared plasmonic far-field nanofocusing effects with elongated depth of focus based on hybrid Au-dielectric-Ag subwavelength structures[J]. Plasmonics, 2016, 11(5): 1-13.

    [3] Ren F, Li M, Gao Q, et al. Surface-normal plasmonic modulator using sub-wavelength metal grating on electro-optic polymer thin film[J]. Optics Communications, 2015, 352: 116-120.

    [4] Wu A′ni, Li Chenyu, Zhou Qingli, et al. Influence of temperature on resonant properties in terahertz subwavelength metal structures[J]. Infrared and Laser Engineering, 2015, 44(6): 1833-1835. (in Chinese)

    [5] Barnes W L, Dereux A, Ebbesen T W. Surface plasmon subwavelength optics [J]. Nature, 2003, 424: 824-830.

    [6] Zheng Hongquan, Ning Haichun. Research on waveguide transmission characteristics of spine type medium load surface Plasmon[J]. Infrared and Laser Engineering, 2016, 45(10): 0102005.

    [7] Pendry J B, Martin-Moreno L, Garcia-Vidal F J. Mimicking surface plasmons with structured surfaces[J]. Science, 2004, 305: 847-848.

    [8] Garcia-Vidal F J, Martin-Moreno L, Pendry J B. Surfaces with holes in them: new plasmonic metal materials[J]. J Opt A: Pure App Opt, 2005, 7: S97-S100.

    [9] Liu J, Liang H, Zhang M, et al. THz wave transmission within the metal film coated double-dielectric-slab waveguides and the tunable filter application[J]. Optics Communications, 2015, 351: 103-108.

    [10] Liu J, Liang H, Zhang M, et al. Terahertz wave transmission within metal-clad antiresonant reflecting hollow waveguides [J]. Applied Optics, 2015, 54(14): 4549-4555.

    [11] Liu L, Li Z, Ning P, et al. Deep-subwavelength guiding and superfocusing of spoof surface plasmon polaritons on helically grooved metal wire[J]. Plasmonics, 2016, 11(2): 359-364.

    [12] Ruan Z, Qiu M. Slow electromagnetic wave guided in subwavelength region along one-dimensional periodically structured metal surface[J]. Applied Physics Letters, 2007, 90: 201906.

    [13] Monnai H, Shinoda H, Hillmer Y. Focused terahertz radiation formed by coherently scattered surface plasmon polaritons from partially uncorrugated metal surfaces[J]. Applied Physics B, 2011, 104: 913-917.

    [14] Song K J, Mazumder P. Active terahertz spoof surface plasmon polariton switch comprising the perfect conductor metal material [J]. IEEE Transactions on Electron Devices, 2009, 56(11): 2792-2799.

    Du Mingdi, Jia Yaqiong, He Shuzhen. Impact of groove depth of subwavelength metal grating on THz spoof SPPs[J]. Infrared and Laser Engineering, 2017, 46(8): 825003
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