Acta Optica Sinica, Volume. 35, Issue s1, 116004(2015)
The Transmission Characteristics of Corrugated Metal Parallel-Plate Waveguide
[1] [1] Z Jacob,V M.Shalaev.Plasmonisc goes quantum[J].Science, 2011,334(6055):463-464.
[2] [2] A V.Zayats,I I.Smolyaninov,A A.Maradudin.Nano-optics of surface plasmon polaritons[J].Physics Reports,2005,408(3): 131-314.
[3] [3] W L. Barnes, A Dereux, T W. Ebbesen. Surface plasmon subwavelength optics[J]. Nature,2003,424(6950): 824-830.
[4] [4] J Wang, C Hu, J Zhang. Multifunctional and multi-output plasmonic meta-elements for integrated optical circuits[J]. Opt Express,2014,22(19): 22753-22762.
[5] [5] J Yang, M Huang, T Li, et al.. Manipulating the field distribution of a polygonal SPP resonator based on AZIM[J]. Journal of Physics D: Applied Physics,2014,47(8): 085106.
[6] [6] K M. Mayer, J H. Hafner. Localized surface plasmon resonance sensors [J]. American Chemical Society,2011,111(12):3828-3857.
[7] [7] W Zhao, J Xu, H Chen. Photoelectrochemical DNA biosensors[J]. Chemical Review,2014,114(15): 7421-7441.
[8] [8] E C. Dreaden, A M. Alkilany, Huang X, et al. The golden age: gold nanoparticles for biomedicine[J]. Royal Society of Chemistry,2012,41(7): 2740-2779.
[9] [9] X Cheng, B Y H Hau, N Li, et al.. Fabrication of a DNA sensor based on simultaneous electrochemical impedance spectroscopy and localized surface plasmon resonance[C]. The Electrochemical Society,2013(16): 717.
[10] [10] Wang Gejia, Zhang Chonglei, Wang Rong,et al.. Extracting phase information of surface plasmon resonance imaging system [J]. Acta Optica Sinica, 2013: 33(5): 0524001 .
[11] [11] Feng Lihang, Zeng Jie, Liang Dakai, et al.. Development of fiber-optic surface plasmon resonance sensor based on tapered structure probe[J]. Acta Physica. Sinica.,2013,62(12): 124207.
[12] [12] W Kiefer. Surface Enhanced Raman Spectroscopy: Analytical,Biophysical and Life Science Applications[M].Weinheim: Wiley-Vch Press,2013: 17-25.
[13] [13] Liu Yu, Xu Shuping, Tang Bing, et al.. Study on the relationship of surface plasmon and resonance surface-enhanced raman scattering[J]. Acta Optica Sinica, 2010, 30(1): 29-33.
[14] [14] K Thyagarajan, J Butet, O J F Martin. Augmenting second harmonic generation using fano resonances in plasmonic systems[J].Nano Lett,2013,13(4): 1847-1851.
[15] [15] J B Pendry, L Martín-Moreno, F J Garcia-Vidal. Mimicking surface plasmons with structured surfaces[J]. Science,2004,305(5685): 847-848.
[16] [16] F J Garcia-Vidal, L Martín-Moreno, J B Pendry.Surfaces with holes in them: New plasmonic metamaterials[J]. J. Opt. A: Pure Appl Opt, 2005,7(2):97-101.
[17] [17] J Wu, D Hou, K Liu, et al.. Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons[J]. Opt Express,2014,22(22): 26777-26787.
[18] [18] J Wu, D Hou, K Liu, et al.. Differential transmission lines with surface plasmon polaritons at low frequencies[J].Electronics Letters,2014,50(5): 379-381.
[19] [19] J Liu, R Mendis, D M Mittleman. Designer reflectors using spoof surface plasmons in the terahertz range[J]. Physical Review B,2012,86(24): 241405.
[20] [20] N Yu, Q Wang, M A Kats, et al.. Designer spoof surface plasmon structures collimate terahertz laser beams[J]. Nature Materials,2010,9(9): 730-735.
[21] [21] R K Li, H To, G Andonian,et al.. Surface-plasmon resonance-enhanced multiphoton emission of high-brightness electron beams from a nanostructured copper cathode[J]. Phys Rev Lett,2013,110(7): 074801.
[23] [23] M A Kats, D Woolf, R Blanchard, et al. Spoof plasmon analogue of metal-insulator-metal waveguides[J].Opt Express, 2011,19(16): 14860-14870.
[24] [24] Z Liao, J Zhao, B Pan, et al.. Broadband transition between microstrip line and conformal surface plasmon waveguide[J]. Journal of Physics D: Applied Physics,2014,47(31): 315103.
[25] [25] Z Fu, Q Gan, Y J Ding, et al.. From waveguiding to spatial localization of THz waves within a plasmonic metallic grating[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2008,14(2): 486-490.
[26] [26] X Bai, S Qu, H Yi. Applications of spoof planar plasmonic waveguide to frequency-scanning circularly polarized patch array[J]. Journal of Physics D: Applied Physics,2014,47(32): 325101.
[27] [27] J J Yang, M Huang, X Z Dai, et al.. A spoof surface WGM sensor based on a textured PEC cylinder[J]. Europhysics Letters,2013,103(4): 44001.
[28] [28] Y Xu, Q Wu, H Chen. Manipulating transverse magnetic modes in waveguide using thin plasmonic materials[J]. Laser Photonics Rev.,2014,8(4): 562-568.
[29] [29] J B Pendry, D Schurig, D R Smith. Controlling electromagnetic fields[J]. Science,2006,312(5781): 1780-1782
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Yang Jianfeng, Yang Jingjing, Yan Su, Deng Wei, Huang Ming. The Transmission Characteristics of Corrugated Metal Parallel-Plate Waveguide[J]. Acta Optica Sinica, 2015, 35(s1): 116004
Category: Materials
Received: Jan. 6, 2015
Accepted: --
Published Online: Jul. 27, 2015
The Author Email: Jianfeng Yang (408671175@qq.com)