• Laser & Optoelectronics Progress
  • Vol. 54, Issue 8, 81601 (2017)
Cai Qiang* and Fang Yuntuan
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/lop54.081601 Cite this Article Set citation alerts
    Cai Qiang, Fang Yuntuan. Study on Wide-Angle High-Absorption Based on Graphene Metamaterials[J]. Laser & Optoelectronics Progress, 2017, 54(8): 81601 Copy Citation Text show less
    References

    [1] Falkovsky L A, Pershoguba S S. Optical far-infrared properties of a graphene monolayer and multilayer[J]. Physical Review B, 2007, 76(15): 153410.

    [2] Mikhailov S, Ziegler K. New electromagnetic mode in graphene[J]. Physical Review Letters, 2007, 99(1): 016803.

    [3] Burke P J, Shengdong L, Zhen Y. Quantitative theory of nanowire and nanotube antenna performance[J]. IEEE Transactions on Nanotechnology, 2006, 5(4): 314-334.

    [4] Zhai Li, Xue Wenrui, Yang Rongcao, et al. Propagation properties of nano dielectric parallel lines coated with graphene[J]. Acta Optica Sinica, 2015, 35(11): 1123002.

    [5] Liu Weiguang, Hu Bin, Li Biao, et al. Research progress of optical modulator based on graphene-metal composite structures[J]. Laser & Optoelectronics Progress, 2016, 53(3): 030005.

    [6] Katsnelson M I, Novoselov K S. Graphene: New bridge between condensed matter physics and quantum electrodynamics[J]. Solid State Communications, 2007, 143(1/2): 3-13.

    [7] Xiao Yi, Zhang Jun, Cai Xiang, et al. Fiber-optic humidity sensing based on graphene[J]. Acta Optica Sinica, 2015, 35(4): 0406005.

    [8] Liu Yuanzhong, Zhang Yuping, Cao Yanyan, et al. Modulator of tunable modulation depth based on graphene metamaterial[J]. Acta Optica Sinica, 2016, 36(10): 1016002.

    [9] Blake P, Hill E W, Castro Neto A H, et al. Making graphene visible[J]. Applied Physics Letters, 2007, 91(6): 063124.

    [10] Peres N M R, Bludov Y V. Enhancing the absorption of graphene in the terahertz range[J]. Europhysics Letters, 2013, 101(5): 58002.

    [11] Greene B I, Federici J F, Dykaar D R, et al. Interferometric characterization of 160 fs far-infrared light pulses[J]. Applied Physics Letters, 1991, 59(8): 893-895.

    [12] Halir R, Cheben P, Schmid J H, et al. Continuously apodized fiber-to-chip surface grating coupler with refractive index engineered subwavelength structure[J]. Optics Letters, 2010, 35(19): 3243-3245.

    [13] Yonetani T, Yamamoto H, Erman J E, et al. Electromagnetic properties of hemoproteins: Optical and electron paramagnetic resonance characteristics of nitric oxide derivatives of metalloporphyrin-apohemoprotein complexes[J]. Journal of Biological Chemistry, 1972, 247(8): 2447-2455.

    [14] Tao H, Bingham C M, Pilon D, et al. A dual band terahertz metamaterial absorber[J]. Journal of Physics D: Applied Physics, 2010, 43(22): 225102-225106.

    [15] Nefedov I S, Valaginnopoulos C A, Melnikov L A. Perfect absorption in graphene multilayers[J]. Journal of Optics, 2013, 15(11): 990-996.

    Cai Qiang, Fang Yuntuan. Study on Wide-Angle High-Absorption Based on Graphene Metamaterials[J]. Laser & Optoelectronics Progress, 2017, 54(8): 81601
    Download Citation