Chin. Phys. Lett.  2007, Vol. 24 Issue (4): 1084-1087    DOI:
Original Articles |
Resonance Absorption of Metallic Plate with Subwavelength Hole Array
CHEN Yue-Gang 1,2;WANG Yan-Hua 1,2;ZHANG Yan 1,2;LIU Shu-Tian1
1Department of Physics, Harbin Institute of Technology, Harbin 1500012Department of Physics, Capital Normal University, Beijing 100037
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CHEN Yue-Gang, WANG Yan-Hua, ZHANG Yan et al  2007 Chin. Phys. Lett. 24 1084-1087
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Abstract The optical reflectance by a metallic plate arranged with array consisting of subwavelength periodic square hole is investigated by using the three-dimensional finite-difference time-domain method (3D-FDTD). There are dips in the reflectivity spectra, which indicate the absorption peaks. The absorption peaks behave differently according to the ratio of hole width and the period of the hole array. Combined with the near fields of the absorption peaks, it is found that the surface plasmon (SP) resonance on the surface of plate and localized SP in the hole play a major role for the two absorptions.
Keywords: 78.66.Bz      41.20.Jb      78.20.Bh     
Received: 04 December 2006      Published: 26 March 2007
PACS:  78.66.Bz (Metals and metallic alloys)  
  41.20.Jb (Electromagnetic wave propagation; radiowave propagation)  
  78.20.Bh (Theory, models, and numerical simulation)  
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CHEN Yue-Gang
WANG Yan-Hua
ZHANG Yan
LIU Shu-Tian
[1]Ebbesen T W, Lezec H J, Ghaemi H F, Thio T and Wolff P A1998 Nature 391 667
[2]William L B, Alain D and Ebbesen T W 2003 Narure 424 824
[3] Sun M, Tian J, Li Z Y, Cheng B Y, Zhang D Z, Jin A Z andYang H F 2006 Chin. Phys. Lett. 23 486
[4] Krishnan A, Thio T, Kim T J, Lezec H J,Ebbesen T W, Wolff P A, Pendry J, Martin-Moreno L, Garcia-Vidal FJ 2001 Opt. Commun. 200 1
[5] Barnes W L, Murray W A, Dintinger J, Devaux E and Ebbesen T W2004 Phys. Rev. Lett. 92 107401
[6] Garc\'{ia-Vidal F J, Lezec H J, Ebbesen TW and Mart\'{in-Moreno L 2003 Phys. Rev. Lett. 90 213901
[7]Hibbins A P, Sambles J R, Lawrence C Rand Brown J R 2004 Phys. Rev. Lett. 92 143904
[8]Hibbins A P, Murray W A, Tyler J, Wedge S,Barnes W L and Sambles J R 2006 Phys. Rev. B 74 073408
[9] Skigin D C and Depine R A 2001 Phys. Rev. E 63 046608
[10]Bliokh Y P, Felsteiner J and Slutsker Y Z 2005 Phys. Rev. Lett. 95 165003
[11]Dong J W, Liang G Q, Chen Y H and Wang H Z 2006 Opt. Exp. 14 2014
[12]Baida F B and Labeke D V 2003 Phys. Rev. B 67 155314
[13] M\"{uller R, Malyarchuk V and Lienau C 2003 Phys. Rev.B 68 205415
[14]Zhu J, Wang Y C and Yan S N 2004 Chin. Phys. Lett. 21 559
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