光子学报, 2015, 44 (11): 1131002, 网络出版: 2015-12-18  

周期性亚波长金属孔阵列的单元结构对称性对其增强光透射特性的影响

The Effect of Unit Structural Symmetry in Periodic Subwavelength Metallic Hole Arrays on Enhanced Optical Transmission
作者单位
1 南华大学 电气工程学院,湖南 衡阳 421001
2 南华大学 机械工程学院,湖南 衡阳 421001
引用该论文

袁志, 刘辉, 陈志勇, 朱卫华, 郭玮, 王新林. 周期性亚波长金属孔阵列的单元结构对称性对其增强光透射特性的影响[J]. 光子学报, 2015, 44(11): 1131002.

YUAN Zhi, LIU Hui, CHEN Zhi-yong, ZHU Wei-hua, GUO Wei, WANG Xin-lin. The Effect of Unit Structural Symmetry in Periodic Subwavelength Metallic Hole Arrays on Enhanced Optical Transmission[J]. ACTA PHOTONICA SINICA, 2015, 44(11): 1131002.

参考文献

[1] EBBESEN T W,LEZEC H J,GHAEMI H F,et al. Extraordinary optical transmission through subwavelength hole arrays[J]. Nature,1998,391(6668): 667-669.

[2] WANG Guo-xi,LU Hua. Tunable multi-channel wavelength demultiplexer based on MIM plasmonic nanodisk resonators at telecommunication regime[J]. Optics Express,2011,19(4): 3513-3518.

[3] LEROSE D,SIAW HEI E K,CHING B C,et al. CMOS-integrated geometrically tunable optical filters[J]. Applied Optics,2013,52(8): 1655-1662.

[4] GIRARD-DESPROLET R,BOUTAMI S,LHOSTIS S,et al. Angular and polarization properties of cross-holes nanostructured metallic filters[J].Optics Express,2013,21(24): 29412-29424.

[5] YUAN Ming-hui,ZHAO Di. A tunable terahertz bandpass filter with a slit aperture flanked by symmetrically distributed parallel grooves on both sides[J].Acta Phtonica Sinica,2014,44(3): 0323003. 袁明辉,赵堤.一种双面周期开槽型可调太赫兹带通滤波器[J]. 光子学报,2014,44(3):0323003.

[6] BARNES W L,DEREUX A,EBBESEN T W,et al. Surface plasmon subwavelength optics [J]. Nature,2003,424(6950): 824-830.

[7] PALA R A,SHIMIZU K T,MELOSH N A,et al. A nonvolatile plasmonic switch employing photochromic molecules[J]. Nano Letters,2008,8(5): 1506-1510.

[8] LIU Ming,ZENTGRAF T,LIU Yong-min,et al. Light-driven nanoscale plasmonic motors[J]. Nature Nanotechnology,2010,5(8): 570-573.

[9] ATWATER H A. The promise of plasmonics[J]. Scientific American,2007,296(4): 56-62.

[10] XU Ting,Wu Yi-kuei,LUO Xian-gang,et al. Plasmonic nanoresonators for high-resolution colour filtering and spectral imaging[J]. Nature Communications,2010,1: 59-63.

[11] MCCRINDLE I J H,GRANT J,DRYSDALE T D,et al. Multi-spectral materials: hybridisation of optical plasmonic filters and a terahertz metamaterial absorber[J]. Advanced Optical Materials,2014,2(2): 149-153.

[12] BARNES W L,MURRAY W A,DINTINGER J,et al. Surface plasmon polaritons and their role in the enhanced transmission of light through periodic arrays of subwavelength holes in a metal film[J]. Physical Review Letters,2004,92(10): 107401-107404.

[13] FANG Xu,LI Zhi-yuan,LONG Yong-bing,et al. Surface-plasmon-polariton assisted diffraction in periodic subwavelength holes of metal films with reduced interplane coupling[J]. Physical Review Letters,2007,99(6): 066805-066817.

[14] GAY G,ALLOSCHERY O,DE LESEGNO B V,et al. The optical response of nanostructured surfaces and the composite diffracted evanescent wave model[J]. Nature Physics,2006,2(4): 262-267.

[15] MARTIN-MORENO L,GARCIA-VIDAL F J,LEZEC H J,et al. Theory of extraordinary optical transmission through subwavelength hole arrays[J]. Physical Review. Letters,2001,86(6): 1114-1117.

[16] KOREKAMP K J K,ENOCH S,SEGERINK F B,et al. Strong influence of hole shape on extraordinary transmission through periodic arrays of subwavelength holes[J]. Physical Review Letters,2004,92(18): 183901-183904.

[17] VAN DER MOLEN K L,SEGERINK F B,VAN HULST N F,et al. Influence of hole size on the extraordinary transmission through subwavelength hole arrays[J]. Applied Physics Letters,2004,85(19): 4316-4318.

[18] GORDON R,BROLO A,MCKINNON A,et al. Strong polarization in the optical transmission through elliptical nanohole arrays [J]. Physical Review Letters,2004,92(3): 037401-037404.

[19] LOVERA P,JONES D,CORBETT B,et al. Polarization tunable transmission through plasmonic arrays of elliptical nanopores[J]. Optics Express,2012,20(23): 25325-25332.

[20] WANG Yong-kai,QIN Yan,Zhang Zhongyue,et al. Extraordinary optical transmission property of X-shaped plasmonic nanohole arrays[J]. Plasmonics,2014,9(2): 203-207.

[21] LEE J W,SEO M A,KIM D S,et al. Polarization dependent transmission through asymmetric C-shaped holes[J]. Applied Physics Letters,2009,94(8): 081102-081104.

[22] GAO Hong-tao,SHI Hao-fei,WANG Chang-tao,et al. Surface plasmon polariton propagation and combination in Y-shaped metallic channels [J]. Optics Express,2005,13(26): 10795-10800.

[23] FANG Zhe-yu,PENG Qian,SONG Wen-tao,et al. Plasmonic focusing in symmetry broken nanocorrals[J]. Nano Letters,2010,11(2): 893-897.

[24] YE J,LAGAE L,MAES G,et al. Symmetry breaking induced optical properties of gold open shell nanostructures[J]. Optics Express,2009,17(26): 23765-23771.

[25] LIU Shao-ding,ZHANG Zong-suo,WANG Qu-quan. et al. High sensitivity and large field enhancement of symmetry broken Au nanorings: effect of multipolar plasmon resonance and propagation[J]. Optics Express,2009,17(4): 2906-2917.

[26] WANG Xin-lin,LIU Hui,LUO Hu,et al. Optical filtering properties of subwavelength Tai-Chi-shaped metal hole arrays[J]. Optics Communications,2015,340: 56-62.

[27] BESBES M,HUGONIN J P,LALANNE P,et al. Numerical analysis of a slit-groove diffraction problem[J]. European Optical Society Rapid Publications,2007,2(7): 1-17.

[28] RUAN Zhi-chao,QIU Min. Enhanced transmission through periodic arrays of subwavelength holes: the role of localized waveguide resonances[J]. Physical Review Letters,2006,96(23): 233901-233904.

[29] DEGIRON A,EBBESEN T W. The role of localized surface plasmon modes in the enhanced transmission of periodic subwavelength apertures[J]. Journal of Optics A: Pure and Applied Optics,2005,7(2): S90-S96.

[30] GORDON R,BROLO A. Increased cut-off wavelength for a subwavelength hole in a real metal[J]. Optics Express,2005,13(6): 1933-1938.

[31] SEPULVEDA B,ALAVERDYAN Y,ALEGRET J,et al. Shape effects in the localized surface plasmon resonance of single nanoholes in thin metal films[J]. Optics Express,2008,16(8): 5609-5616.

[32] SUN Mei,XING Su-xia,CHEN Yuan-yuan,et al. Enhanced transmission through periodic H-shaped arrays[J]. Acta Phtonica Sinica,2010,39(9): 1602-1605.孙梅,邢素霞,陈媛媛,等.周期排列的H-空气槽光学特性的研究[J]. 光子学报,2010,39(9):1602-1605.

袁志, 刘辉, 陈志勇, 朱卫华, 郭玮, 王新林. 周期性亚波长金属孔阵列的单元结构对称性对其增强光透射特性的影响[J]. 光子学报, 2015, 44(11): 1131002. YUAN Zhi, LIU Hui, CHEN Zhi-yong, ZHU Wei-hua, GUO Wei, WANG Xin-lin. The Effect of Unit Structural Symmetry in Periodic Subwavelength Metallic Hole Arrays on Enhanced Optical Transmission[J]. ACTA PHOTONICA SINICA, 2015, 44(11): 1131002.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!