• Laser & Optoelectronics Progress
  • Vol. 53, Issue 6, 61301 (2016)
Shao Xiaozhen*, Zhang Guanmao, Wang Qiong, and Hu Nan
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/lop53.061301 Cite this Article Set citation alerts
    Shao Xiaozhen, Zhang Guanmao, Wang Qiong, Hu Nan. Transmission Characteristics of Long-Range Dielectric-Loaded Surface Plasmon Polariton Waveguide Based on Golden Ratio[J]. Laser & Optoelectronics Progress, 2016, 53(6): 61301 Copy Citation Text show less
    References

    [1] Krasavin A V, Zayats A V. Guiding light at the nanoscale:Numerical optimization of ultrasubwavelength metallic wire plasmonic waveguides[J]. Optics Letters, 2011, 36(16): 3127-3129.

    [2] Barnes W L, Dereux A, Ebbesen T W. Surface plasmon subwavelength optics[J]. Nature, 2003, 424(6950): 824-830.

    [3] Chiu N F, Lin C W, Lee J H, et al.. Enhanced luminescence of organic/metal nanostructure for grating coupler active long-range surface plasmonic device[J]. Applied Physics Letters, 2007, 91(8):083114.

    [4] Zhao Hai, Song Qing, Sun Haili, et al.. Study on transmission characteristics of a hybrid triangle wedge surface plasmonic polaritons waveguide with subwavelength mode confinement[J]. Laser & Optoelectronics Progress, 2015, 52(9): 091301.

    [5] Verhagen E, Spasenovic M, Polman A, et al.. Nanowire plasmon excitation by adiabatic mode transformation[J]. Physical Review Letters, 2009, 102(20): 203904.

    [6] Pyayt A L, Wiley B, Xia Y, et al.. Integration of photonic and silver nanowire plasmonic waveguides[J]. Nature Nanotechnoly, 2008, 3(11): 660-665.

    [7] Bozhevolnyi S I, Volkov V S, Devaux E, et al.. Channel plasmon subwavelength waveguide components including interferometers and ring resonators[J]. Nature, 2006, 440(7083): 508-511.

    [8] Holmgaard T, Bozhevolnyi S I. Theoretical analysis of dielectric-loaded surface plasmon polariton waveguides[J]. Physical Review B, 2007, 75(24): 245405.

    [9] Krasavin A V, Zayats A V. Passive photonic elements based on dilectric-loaded surface plasmon polariton waveguides[J]. Applied Physics Letters, 2007, 90(21): 211101.

    [10] Holmgaard T, Bozhevolnyi S I, Markey L, et al.. Dielectric-loaded surface plasmon-polariton waveguides at telecommunication wavelengths: Excitation and characterization[J]. Applied Physics Letters, 2008, 92(1): 011124.

    [11] Zhang Guanmao, Sun Haili, Li Jianming, et al.. Study on the transmission characteristics of symmetric hybrid long-range surface plasmon polariton waveguide[J]. Laser & Optoelectronics Progress, 2013, 50(12): 121301.

    [12] Burke J J, Stegeman G I, Tamir T. Surface-polariton-like waves guided by thin, lossy metal films[J]. Physical Review B, 1986, 33(8):5186-5201.

    [13] Charbonneau R, Bernin P, Berolo E, et al.. Expermental observation of plasmon-polariton waves supported by a thin metal films of finite width[J]. Optical Letters, 2000, 25(11):844-846.

    [14] Wang Jicheng, Liu Hongjiao, Cai Zengyan, et al.. Design of surface plasmon dichroic splitter with two metallic slits[J]. Laser & Optoelectronics Progress, 2014, 51(10): 102301.

    [15] Shi Zhendong, Zhao Haifa, Liu Jianlong, et al.. Design of a metallic waveguide all-optical switch based on surface plasmon polaritons[J]. Acta Optica Sinica, 2015, 35(2): 0213001.

    [16] Wang Jicheng, Jiang Yalan, Wang Yueke, et al.. Directional couplers based on MIM plasmonic waveguide stuctures[J]. Chinese J Lasers, 2015, 42(2): 0217001.

    [17] Wang Zhibin, Han Huanhuan. Study of prism surface plasmons resonances senor based on double dielectric layers[J]. Acta Photonica Sinica, 2015, 44(10): 1024001.

    [18] Gosciniak J, Holmgaard T, Bozhevolnyi S I. Theoretical analysis of long-range dielectric-loaded surface plasmon polariton waveguides[J]. Journal of Lightwave Technology, 2011, 29(10): 1473-1481.

    [19] Berini P. Figures of merit for surface plasmon waveguides[J]. Optics Express, 2006, 14(26): 13030-13042.

    [20] Krasavin A V, Zayats A V. Numerical analysis of long-range surface plasmon polariton modes in nanoscale plasmonic waveguides[J]. Optics Letters, 2010, 35(13) : 2118-2120.

    [21] O′Connor D, McCurry M, Lafferty B, et al.. Plasmonic waveguide as an efficient transducer for high-density data storage[J]. Applied Physics Letters, 2009, 95(17): 171112.

    [22] Krasavin A V, Zayats A V. All-optical active components for dielectric-load plasmonic waveguides[J]. Optics Communications, 2010, 283(8): 1581-1584.

    [23] Volkov V S, Han Z H, Nielsen M G, et al.. Long-range dielectric-load surface plasmon polariton waveguides operating at telecommunication wavelengths[J]. Optics Letters, 2011, 36(21): 4278-4280.

    [24] Krasavin A V, Zayats A V. Silicon-based plasmonic waveguides[J]. Optics Express, 2010, 18(11): 11791-11799.

    [25] Shi X L, Zhang X M, Han Z H, et al.. CMOS-compatible long-range dielectric-load plasmonic waveguides[J]. Journal of Lightwave Technology, 2013, 31(21): 3361-3367.

    [26] Rao R, Tang T. Study on active surface plasmon waveguides and design of a nanoscale lossless surface plasmon waveguide[J]. Journal of the Optical Society of America B, 2011, 28(5): 1258-1265.

    [27] Palik E D. Handbook of optical constants of solids[M]. Boston: Academic Press, 1985.

    [28] Li Y E, Zhao H, Ma A N, et al.. Semi-elliptical dielectric-loaded surface plasmon-polariton waveguides[J]. Optics Communications, 2011, 284(12): 2839-2842.

    [29] Han Z H, Bozhevolnyi S I. Radiation guiding with suface plasmon polaritons[J]. Reports on Progress in Physics, 2013, 76(1): 16402-16438.

    Shao Xiaozhen, Zhang Guanmao, Wang Qiong, Hu Nan. Transmission Characteristics of Long-Range Dielectric-Loaded Surface Plasmon Polariton Waveguide Based on Golden Ratio[J]. Laser & Optoelectronics Progress, 2016, 53(6): 61301
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