• Acta Photonica Sinica
  • Vol. 47, Issue 2, 223001 (2018)
ZHONG Dongzhou* and LIU Chengpeng
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/gzxb20184702.0223001 Cite this Article
    ZHONG Dongzhou, LIU Chengpeng. Optical Leaky Wave Antenna with Ellipsoid Holes Array in Fourlayer Plasmons Structure[J]. Acta Photonica Sinica, 2018, 47(2): 223001 Copy Citation Text show less
    References

    [1] SPADACCINIC M, HOPKINS J B, SHAW L A. Scanning holographic optical tweezers [J]. Optics Letters, 2017, 42(15): 28622865.

    [2] YANG T, MA L, GAO Z,et al. Twodimensional hetero structure as a platform for surfaceenhanced Raman scattering [J]. Nano Letters, 2017, 17(4): 26212626.

    [3] YIFAT Y, ACKERMAN M, GUYOTSIONNEST P. MidIR colloidal quantum dot detectors enhanced by optical nanoantennas [J]. Applied Physics Letters, 2017, 110(4): 041106041109.

    [4] YANG Tian, TATSUMA T. Mechanisms and applications of plasmoninduced charge separation at TiO2 films loaded with gold nanoparticles [J]. Journal of the American Chemical Society, 2005, 127(20): 76327637.

    [5] VIETZ C, KAMINSKA I, SANZ P M, et al. Broadband fluorescence enhancement with selfassembled silver nanoparticle optical antennas [J]. Acs Nano, 2017, 11(5): 49694975.

    [6] WENZEL M T, HARTLING T, OLK P, et al. Gold nanoparticle tips for optical field confinement in infrared scattering nearfield optical microscopy [J]. Optics Express, 2008, 16(16): 1230212312

    [7] BURKE P J, LI S, YU Z. Quantitative theory of nanowire and nanotube antenna performance [J]. IEEE Transactions on Nanotechnology, 2004, 5(4): 314334.

    [8] YIFAT Y, EITAN M, ILUZ Z, et al. Highly efficient and broadband wideangle holography using patchdipole nanoantenna reflect arrays [J]. Nano Letters, 2014, 14(5): 24852490.

    [9] YIFAT Y, ILUZ Z, BARLEV D, et al. High load sensitivity in wideband infrared dualVivaldi nanoantennas [J]. Optics Letters, 2013, 38(2): 205207.

    [10] REN X, SHAS Wei, CHOY W. Tuning optical responses of metallic dipole nanoantenna using grapheme [J]. Optics Express, 2013, 21(26): 3182431829.

    [11] CHEN K, RAZINSKAS G, FEICHTNER T, et al. Electromechanically tunable suspended optical nanoantenna. [J]. Nano Letters, 2016, 16(4): 26802685.

    [12] ZHU Lu, WANG Yang, LIU Yuanyuan,et al. The design of the slot yagi nanoantenna and the absorption characteristics of wide band [J]. Acta Photonica Sinica, 2016, 45(10): 138145.

    [13] BUTET J, THYAGARAJAN K, MARTIN O J. Ultrasensitive optical shape characterization of gold nanoantennas using second harmonic generation [J]. Nano Letters, 2013, 13(4): 17871792.

    [14] APPAVOO K, LEI D Y, SONNEFRAUD Y, et al. Role of defects in the phase transition of VO2 nanoparticles probed by plasmon resonance spectroscopy [J]. Nano Letters, 2012, 12(2): 780.

    [15] ZHANG W, MARTIN OJF. A universal law for plasmon resonance shift in biosensing [J]. Acs Photonics, 2014, 2(1): 144150.

    [16] PETSCHULAT J, CIALLA D, JANUNTS N, et al. Doubly resonant optical nanoantenna arrays for polarization resolved [J]. Optics Express, 2010, 18(5): 41844197.

    [17] TVINGSTEDT K, DAL Z S, INGANASI O, et al. Trapping light with micro lenses in thin film organic photovoltaic cells [J]. Optics Express, 2008, 16(26): 2160821515.

    [18] KATS M A, BLANCHARD R, GENEVET P, et al. Thermal tuning of midinfrared plasmonic antenna arrays using a phase change material [J]. Optics Letters, 2013, 38(3): 368370.

    [19] SALMISTRARO M, SCHWARTZBERG A, BAO W, et al. Triggering and monitoring plasmon‐enhanced reactions by optical nanoantennas coupled to photocatalytic beads [J]. Small, 2013, 9(19): 33013307.

    [20] SONG Q, CAMPIONE S, BOYRAZ O, et al. Siliconbased optical leaky wave antenna with narrow beam radiation [J]. Optics Express, 2011, 19(9): 87358749.

    [21] YOUSEFI L, FOSTER A C. Waveguidefed optical hybrid plasmonic patch nanoantenna [J]. Optics Express, 2012, 20(16): 1832618335.

    [22] YOUSEFI L. Highly directive hybrid plasmonic leaky wave optical nanoantenna [J]. Progress in Electromagnetics Research Letters, 2014, 50: 8590.

    [23] PANAHI M A, YOUSEFI L, SHAHABADI M. Highly directive hybrid plasmonic leakywave optical antenna with controlled sidelobe level [J]. Journal of Lightwave Technology, 2015, 33(23): 47914798.

    [24] SACHER W D, HUANG Y, DING L, et al. Wide bandwidth and high coupling efficiency Si3N4onSOI duallevel grating coupler [J]. Optics Express, 2014, 22(9): 1093810947.

    [25] LIU X X, ALU A. Subwavelength leakywave optical nanoantennas: Directive radiation from linear arrays of plasmonic nanoparticles [J]. Physical Review B Condensed Matter, 2010, 82(14): 26352645.

    [26] LAKOWICZ J R. Radiative decay engineering: biophysical and biomedical applications [J]. Analytical Biochemistry, 2001, 298(1): 124.

    [27] SALVADOR R, MARTINEZ A, et al. Analysis of hybrid dielectric plasmonic waveguides [J]. IEEE Journal of Selected Topics in Quantum Electronics, 2008, 14(6): 14961501.

    [28] PITARKE J M, SILKIN V M, CHULKOV E V, et al. Theory of surface plasmons and surfaceplasmon polaritons[J]. Reports on Progress in Physics, 2006, 70(1): 187.

    [29] YOUSEFI L, FOSTER A C. Waveguidefed optical hybrid plasmonic patch nanoantenna [J]. Optics Express, 2012, 20(16): 1832618335.

    [30] JACKSON D R, OLINER A A. Leaky‐wave antennas [M]. Modern Antenna Handbook. John Wiley and Sons, Inc, 2007: 325367.

    [31] COLLIN R E. Antennas and radiowave propagation [M].Antennas and radiowave propagation. McGrawHill, 1985: 79116.

    [32] BALANIS C A. Antenna theory: analysis and design, 3rd edition [M]. Wiley, 2012.

    [33] CROSWELL W. Antenna theory, analysis, and design [M]. Harper and Row, 1982.

    [34] BALANISC A. Antenna theory and design [M]. John Willey and Sons, Inc, 2005.

    [35] JOHNSON P B. Optical constants of the noble metals [J]. Physical Review B, 1972, 6(12): 43704379.

    ZHONG Dongzhou, LIU Chengpeng. Optical Leaky Wave Antenna with Ellipsoid Holes Array in Fourlayer Plasmons Structure[J]. Acta Photonica Sinica, 2018, 47(2): 223001
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