• Journal of Infrared and Millimeter Waves
  • Vol. 38, Issue 1, 21 (2019)
HU Zhi-Ting1、2、*, CHEN Ji-Wei2、3, DU Lei2, ZHU Yu-Fang3, ZHANG Jia-Zhen2, XU Huang2, LIU Feng1, and CHEN Gang2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • show less
    DOI: 10.11972/j.issn.1001-9014.2019.01.004 Cite this Article
    HU Zhi-Ting, CHEN Ji-Wei, DU Lei, ZHU Yu-Fang, ZHANG Jia-Zhen, XU Huang, LIU Feng, CHEN Gang. Theoretical study on the far-infrared perfect absorbers with SU8 based multilayered metamaterial structure[J]. Journal of Infrared and Millimeter Waves, 2019, 38(1): 21 Copy Citation Text show less
    References

    [1] Woodward R M, Cole B E, Wallace V P, et al. Terahertz pulse imaging in reflection geometry of human skin cancer and skin tissue [J]. Phys. Med. Biol, 2002, 47(21): 3853-3863.

    [2] Waters J W, Froidevaux L, Harwood R S, et al. The Earth observing system microwave limb sounder (EOS MLS) on the Aura satellite [J]. IEEE Trans. Geo. Rem. Sens., 2006, 44(5): 1075-1092.

    [3] Appleby R, Wallace H B. Standoff detection of weaponsand contraband in the 100 GHz to 1 THz region [J]. IEEE Trans. Antenn. Propag., 2007, 55(11), 2944-2956.

    [4] Nagai N, Sumitomo M, Imaizumi M, et al. Characterization of electron-or proton-irradiated Si space solar cells by THz spectroscopy [J]. Semicond. Sci. Technol., 2006, 21(2), 201-209.

    [5] Tonouchi M. Cutting-edge terahertz technology [J]. Nat. Photonics, 2007, 1(2): 97-105.

    [6] Pilbratt G L, Riedinger J R, Passvogel T, et al. Herschel Space Observatory-An ESA facility for far-infrared and submillimetre astronomy [J]. Astron. Astrophys., 2010, 518: L1.

    [7] Landy N I, Sajuyigbe S, Mock J J, et al. Perfect metamaterial absorber [J]. Phys. Rev. Lett., 2008, 100(20): 207402.

    [8] HU Tao, Landy N I, Bingham C M, et al . A metamaterial absorber for the terahertz regime: Design, fabrication and characterization [J]. Opt. Express, 2008, 16(10): 7181-7188.

    [9] HU Tao, Bingham C M, Strikwerda A C, et al. Highly flexible wide angle of incidence terahertz metamaterial absorber: Design, fabrication, and characterization [J]. Phys. Rev. B, 2008, 78(24): 241103.

    [10] Landy N, Bingham C, Tyler T, et al. Design, theory, and measurement of a polarization-insensitive absorber for terahertz imaging [J]. Phys. Rev. B, 2009, 79(12):125104.

    [11] WEN Qi-Ye, ZHANG Huai-Wu, XIE Yun-Song, et al. Dual band terahertz metamaterial absorber: Design, fabrication, and characterization [J]. Appl. Phys. Letter, 2009, 95(24):241111.

    [12] MA Yong, CHEN Qin, Grant J, et al. A terahertz polarization insensitive dual band metamaterial absorber [J]. Opt. Letter, 2011, 36(6): 945-947.

    [13] Grant J, MA Yong, Saha S, et al. Polarization insensitive, broadband terahertz metamaterial absorber [J]. Opt. Letter, 2011, 36(17): 3476-3478.

    [14] YE Yu-Qian, JIN Yi, HE Sai-Ling. Omnidirectional, polarization-insensitive and broadband thin absorber in the terahertz regime [J]. J. Opt. Soc. Am. B, 2010, 27(3): 498-504.

    [15] Hokmabadi M P, Wilbert D S, Kung P, et al. Design and analysis of perfect terahertz metamaterial absorber by a novel dynamic circuit model [J]. Opt. Express, 2013, 21(14): 16455-16465.

    [16] WEN Qi-Ye, XIE Yun-Song, ZHANG Huai-Wu, et al. Transmission line model and fields analysis of metamaterial absorber in the terahertz band [J]. Opt. Express, 2009, 17(22): 20256-20265.

    [17] Diem M, Koschny T, Soukoulis C M. Wide-angle perfect absorber/thermal emitter in the terahertz regime [J]. Phys. Rev. B, 2009, 79(3): 033101.

    [18] HAO Jia-Ming, ZHOU Lei, QIU Min. Nearly total absorption of light and heat generation by plasmonic metamaterials [J]. Phys. Rev. B, 2011, 83(16): 165107.

    [19] HAO Jia-Ming, WANG Jing, LIU Xian-Liang, et al. High performance optical absorber based on a plasmonic metamaterial [J]. Appl. Phys. Letter, 2010, 96(25): 251104.

    [20] Hendrickson J, GUO Jo-Shua, ZHANG Bo-Yang, et al. Wideband perfect light absorber at midwave infrared using multiplexed metal structures [J]. Opt. Letter, 2012, 37(3):371-373.

    [21] Nath J, Maukonen D, Smith E, et al. Thin-film, wide-angle, design-tunable, selective absorberfrom near UV to far infrared [J]. Proc. SPIE, 2013, 8704 87041D.

    [22] WANG Xiao-Nong, LUO Chun-Rong, et alHONG Gang, . Metamaterial optical refractive index sensor detected by the naked eye [J]. Appl. Phys. Letter, 2013, 102(9): 091902.

    [23] CHEN Hou-Tong. Interference theory of metamaterial perfect absorbers [J]. Opt. Express, 2012, 20(7): 7165-7172.

    [24] PENG Xiao-Yu, WANG Bin, LAI Shu-Min, et al. Ultrathin multi-band planar metamaterial absorber based on standing wave resonances [J]. Opt. Express, 2012, 20(25): 27756-27765.

    [25] LIU Na, Mesch M, Weiss T, et al. Infrared Perfect Absorber and Its Application As Plasmonic Sensor [J]. Nano Letter, 2010, 10: 2342.

    [26] CHENG Deng-Mu, XIE Jian-Liang, ZHANG Hui-Bing, et al. Pantoscopic and polarization-insensitive perfect absorbers in the middle infrared spectrum [J]. J. Opt. Soc. Am. B, 2012, 29: 1503.

    [27] Ordal M A, Long L L, Bell R J, . Optical properties of the metals Al, Co, Cu, Au, Fe, Pb, Ni, Pd, Pt, Ag, Ti, and W in the infrared and far infrared [J]. Appl. Opt., 1983, 22: 1099.

    HU Zhi-Ting, CHEN Ji-Wei, DU Lei, ZHU Yu-Fang, ZHANG Jia-Zhen, XU Huang, LIU Feng, CHEN Gang. Theoretical study on the far-infrared perfect absorbers with SU8 based multilayered metamaterial structure[J]. Journal of Infrared and Millimeter Waves, 2019, 38(1): 21
    Download Citation