• Opto-Electronic Engineering
  • Vol. 43, Issue 1, 82 (2016)
WANG Sijiang*, MAO Hongyan, XIA Liangping, YANG Zhongbo, WEI Dongshan, CUI Hongliang, and DU Chunlei
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1003-501x.2016.01.015 Cite this Article
    WANG Sijiang, MAO Hongyan, XIA Liangping, YANG Zhongbo, WEI Dongshan, CUI Hongliang, DU Chunlei. Terahertz Sensing Chip of Sub-wavelength Metallic Arrays[J]. Opto-Electronic Engineering, 2016, 43(1): 82 Copy Citation Text show less
    References

    [1] Bitzer A , Oetner A , Walther M. Terahertz near-field microscopy with subwavelength spatial resolution based onphotoconductive antennas [J]. Applied Optics(S1559-128X),2010,49(19):E1-E6.

    [2] Woodward R M,Wallace V P,Arnone D D. Terahertz Pulsed Imaging of Skin Cancer in the Time and Frequency Domain [J]. Journal of Biological Physics(S0092-0606),2003,29(2/3):257-259.

    [3] Hirata A,Kosugi T,Takahashi H,et al. 120-GHz-band millimeter-wave photonic wireless link for 10-Gb/s data transmission[J]. Microwave Theory and Techniques,IEEE Transactions on(S0018-9480),2006,54(5):1937-1944.

    [4] Krumbholz N,Gerlach K,Rutz F,et al. Omnidirectional terahertz mirrors:A key element for future terahertz communication systems [J]. Applied Physics Letters(S0003-6951),2006,88(20):202905.

    [5] Pendry J B,Holden A J,Robbins D J,et al. Magnetism from conductors and enhanced nonlinear phenomena [J]. IEEE Transactions on Microwave Theory and Techniques(S0018-9480),1999,47(11):2075-2084.

    [6] Ebbesen T W,Lezee H J,Ghaemi H F,et al. Extraordinary optical transmission through sub-wavelength hole arrays [J]. Nature(S0028-0836),1998,391(6668):667-669.

    [7] LIU Zhaowei,Lee H,XIONG Yi,et al. Far-field Optical Hyperlens Magnifying Sub-Diffraction-Limited Objects [J]. Science(S0036-8075),2007,315(5819):1699-1701.

    [8] Park H R,Ahn K J,Han S,et al. Colossal Absorption of Molecules Inside Single Terahertz Nanoantennas [J]. Nano Letters(S1530-6984),2013,13(4):1782-1786.

    [9] YAN Xin,ZHANG Xingfang,LIANG Lanju,et al. Research Progress in the Application of Biosensors by Using Metamaterial in Terahertz Wave [J]. Spectroscopy and Spectral Analysis,2014,34(9):2365-2371.

    [10] Hu Tao,Logan R Chieffo,Mark A Brenckle,et al. Metamaterials on Paper as a Sensing Platform [J]. Advanced Materials(S0935-9648),2011,23(28):3197-3201.

    [11] WU Xiaojun,PAN Xuecong,QUAN Baogang,et al. Self-referenced sensing based on terahertz metamaterial for aqueous solutions [J]. Applied Physics Letters(S0003-6951),2013,102(15):151109.

    [12] Ghazal Hajisalem,Aftab Ahmed,PANG Yuanjie,et al. Plasmon hybridization for enhanced nonlinear optical response [J]. Optics Express(S1094-4087),2012,20(28):29923-29930.

    [13] HONG Xia,GUO Xiongbin,FANG Xu,et al. Design and research of enhanced surface plasmon resonance based on silicon based germanium metal-semiconductor-metal photo detectors [J]. Acta Physica Sinica,2013,62(17):178502.

    [14] XIA Liangping,YIN Shaoyun,GAO Hongtao,et al. Sensitivity Enhancement for Surface Plasmon Resonance Imaging Biosensor by Utilizing Gold-Silver Bimetallic Film Configuration [J]. Plasmonics(S1557-1955),2011,6(2):245-250.

    [15] XIA Liangping,YANG Zheng,YIN Shaoyun,et al. Surface enhanced Raman scattering substrate with metallic nanogap array fabricated by etching the assembled polystyrene spheres array [J]. Optics Express(S1094-4087),2013,21(9):11349-11355.

    [16] Lisa V Brown,Ke Zhao,Nicholas King,et al. Surface-Enhanced Infrared Absorption Using Individual Cross Antenna Tailored to Chemical Moieties [J]. Journal of the American Chemical Society(S0002-7863),2013,135(9):3688-3695.

    [17] WANG Dongxing,ZHU Wenqi,Michael D Best,et al. Directional Raman Scattering from Single Molecules in the Feed Gaps of Optical Antennas [J]. Nano Letters(S1530-6984),2013,13(5):2194-2198.

    [18] GE Min,ZHAO Hongwei,JI Te,et al. Terahertz time-domain spectroscopy of common five element of sugar [J]. The Journal of Physical Chemistry B,2005,35(6):441-445.

    [19] WANG He,ZHAO Guozhong. Terahertz Spectroscopic Inspection of Several Kinds of Plastic [J]. Acta Photonica Sinica, 2010,39(7):1185-1188.

    [20] SHEN Xiaopeng,YANG Yan,ZANG Yuanzhang,et al. Triple-band terahertz metamaterial absorber:Design,experiment, and physical interpretation [J]. Applied Physics Letters(S0003-6951),2012,101(15):154102.

    [21] XIAO Xiao,WU Jinbo,Fumiaki Miyamaru,et al. Fano effect of metamaterial resonance in terahertz extraordinary transmission [J]. Applied Physics Letters(S0003-6951),2011,98(1):011911.

    [22] CHEN Yongyao,Ibraheem A I Al-Naib,GU Jianqiang,et al. Membrane metamaterial resonators with a sharp resonance:A comprehensive study towards practical terahertz filters and sensors [J]. AIP Advances(S2158-3226),2012,2(2):022109.

    [23] KREIBIG U,GENZEL L. Optical absorption of small metallic particles [J]. Surface Science(S0039-6028),1985,156(2): 678-700.

    [24] HAYNES C L,MCFARLAND A D,ZHAO L,et al. Nanoparticle optics:the importantance of radiative dipole coupling in two-dimensional nanoparticle arrays [J]. The Journal of Physical Chemistry B(S1520-6106),2003,107(30):7337-7342.

    WANG Sijiang, MAO Hongyan, XIA Liangping, YANG Zhongbo, WEI Dongshan, CUI Hongliang, DU Chunlei. Terahertz Sensing Chip of Sub-wavelength Metallic Arrays[J]. Opto-Electronic Engineering, 2016, 43(1): 82
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