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Chin. Phys. B, 2016, Vol. 25(7): 078401    DOI: 10.1088/1674-1056/25/7/078401
INTERDISCIPLINARY PHYSICS AND RELATED AREAS OF SCIENCE AND TECHNOLOGY Prev   Next  

Excitation of anti-symmetric coupled spoof SPPs in 3D SIS waveguides based on coupling

Li-li Tian(田莉莉)1, Yang Chen(陈杨)2, Jian-long Liu(刘建龙)1, Kai Guo(郭凯)1, Ke-ya Zhou(周可雅)1, Yang Gao(高扬)3, Shu-tian Liu(刘树田)1
1 Department of Physics, Harbin Institute of Technology, Harbin 150001, China;
2 School of Electrical Enginnering & Information, Northeast Petroleum University, Daqing 163318, China;
3 College of Electronic Engineering, Heilongjiang University, Harbin 150080, China
Abstract  According to the electromagnetic field distributions, there exist two kinds of coupled spoof surface plasmon polaritons (SSPPs), the symmetric and anti-symmetric modes, in the three-dimensional (3D) subwavelength spoof-insulator-spoof (SIS) waveguide. We study the dispersion and excitation of the two kinds of coupled SSPPs supported by the 3D SIS waveguide. The evolution of the dispersion with the thickness and gap width of the waveguide is numerically investigated, and we give a theoretical analysis according to the coupling mechanism. Specially, based on the coupling mechanism, we design a zipper structure, through which the excitation and propagation of the anti-symmetric coupled modes can be realized effectively.
Keywords:  waveguides      surface plasmons      microwave technology  
Received:  22 January 2016      Revised:  07 March 2016      Accepted manuscript online: 
PACS:  84.40.Az (Waveguides, transmission lines, striplines)  
  73.40.Rw (Metal-insulator-metal structures)  
  84.60.Bk (Performance characteristics of energy conversion systems; figure of merit)  
  75.40.Mg (Numerical simulation studies)  
Fund: Project supported by the National Basic Research Program of China (Grant No. 2013CBA01702) and the National Natural Science Foundation of China (Grant Nos. 61377016, 61575055, 10974039, 61307072, 61308017, and 61405056).
Corresponding Authors:  Shu-tian Liu     E-mail:  stliu@hit.edu.cn

Cite this article: 

Li-li Tian(田莉莉), Yang Chen(陈杨), Jian-long Liu(刘建龙), Kai Guo(郭凯), Ke-ya Zhou(周可雅), Yang Gao(高扬), Shu-tian Liu(刘树田) Excitation of anti-symmetric coupled spoof SPPs in 3D SIS waveguides based on coupling 2016 Chin. Phys. B 25 078401

[1] Maier S A 2007 Plasmonics: Fundamentals and Applications (1st Edn.) (New York: Springer) pp. 5-34
[2] Barnes W L, Dereux A and Ebbesen T W 2003 Nature 424 824
[3] Fang N, Lee H, Sun C and Zhang X 2005 Science 308 534
[4] Vedantam S, Lee H, Tang J, Conway J, Staffaroni M and Yablonovitch E 2009 Nano Lett. 9 3447
[5] Lassiter J B, Sobhani H, Fan J A, Kundu J, Capasso F, Nordlander P and Halas N J 2010 Nano Lett. 10 3184
[6] Dionne J A, Sweatlock L A, Atwater H A and Polman A 2006 Phys. Rev. B 73 035407
[7] Feigenbaum E and Orenstein M 2007 J. Lightw. Technol. 25 2547
[8] Pannipitiya A, Rukhlenko I D, Premaratne M, Hattori H T and Agrawal G P 2010 Opt. Express 18 6191
[9] Wu C N, Li H J, Peng X, Gao G T amd Liu Z M 2013 Chin. Phys. B 22 057301
[10] O'Hara J, Averitt R and Taylor A 2004 Opt. Express 12 6397
[11] Saxler J, Rivas J G, Janke C, Pellemans H P M, Bolívar P H and Kurz H 2004 Phys. Rev. B 69 155427
[12] Wang K L and Mittleman D M 2004 Nature 432 376
[13] Pendry J B, Martin-Moreno L and Garcia-Vidal F J 2004 Science 305 847
[14] Hibbins A P, Evans B R and Sambles J R 2005 Science 308 670
[15] Garcia-Vidal F J, Martin-moreno L and Pendry J B 2005 J. Opt. A: Pure Appl. Opt. 7 S97
[16] Ding L, Liu J S and Wang K J 2010 Chin. Phys. B 19 127302
[17] Gao Z, Shen L F, Wu J J, Yang T J and Zheng X D 2012 Opt. Commun. 285 2076
[18] Shen L F, Chen X D and Yang T J 2008 Opt. Express 16 3326
[19] Wang B W, Jin Y and He S 2008 Appl. Opt. 47 3694
[20] Zhang j, Cai L K, Bai W L, Xu Y and Song G F 2009 J. Appl. Phys. 106 103715
[21] Kats M A, Woolf D, Blanchard R, Yu N F and Capasso F 2011 Opt. Express 19 14860
[22] Woolf D, Kats M A and Capasso F 2014 Opt. Lett. 39 517
[23] Zhang Q, Xiao J J, Han D Z, Qin F F, Zhang X M and Yao Y 2015 J. Phys. D: Appl. Phys. 48 205103
[24] Shen X P, Cui T J, Martin-Cano D and Garcia-Vidal F J 2013 Proc. Nat. Acad. Sci. USA 110 40
[25] Shen X P and Cui T J 2013 Appl. Phys. Lett. 102 211909
[26] Gao X, Shi J H, Shen X P, Ma H F, Jiang W X, Li L M and Cui T J 2013 Appl. Phys. Lett. 102 151912
[27] Gao X, Zhou L, Liao Z, Ma H F and Cui T J 2014 Appl. Phys. Lett. 104 191603
[28] Zhou Y J and Yang B J 2014 Opt. Express 22 21589
[29] Quesada R, Martín-Cano D, Garcia-Vidal J and Bravo-Abad J 2014 Opt. Lett. 39 2990
[30] Gao X, Zhou L and Cui T J 2015 Sci. Rep. 5 9250
[31] Ma H F, Shen X P, Cheng Q, Jiang W X and Cui T J 2014 Laser Phot. Rev. 8 146
[32] Liao Z, Zhao J, Pan B C, Shen X P and Cui T J 2014 J. Phys. D: Appl. Phys. 47 315103
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