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Reduced permittivity and permeability profiles are proposed based on the electromagnetic transformation theory to achieve spherical reshapers with a split-ring-resonator(SRRs) microstructure. The effective radial permittivity distribution depending on the structure parameters, is obtained to implement a reshaper impinged by a TE incident wave. Finite-element simualtions are carried out and the results show that a good reshaping effect can be achieved at a working frequency despite the reduced and the discreted material parameters as well as unneglectable dipersion and loss effects. And the frequency band can be broadened by choosing proper microstructures such that the resonance point is far from the distribution range of the structural factors.
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Keywords:
- reshaper /
- microstructure /
- finite-element simulation
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[7] Wang X H, Qu Sh B, Xia S, Wang B K, Xu Zh, Ma H, Wang J F, Gu ch, Wu X, Lu L, Zhou H 2010 Chin. Phys. B 19 064101
[8] Ma H, Qu S B, Xu Z, Zhang J Q, Wang J F 2009 Chin. Phys. B 18 1025
[9] Pendry J B, Schurig D, Smith D R 2006 Science 312 1780
[10] Schurig D, Mock J J, Justice B J, Cummer S A, Pendry J B, Starr A F, Smith D R 2006 Science 314 977
[11] Cai W, Chettiar U K, Kildishev A V, Shalaev V M 2007 Nat. Photonics 1 224
[12] Li J, Pendry J B 2008 Phys. Rev. Lett. 101 203901
[13] Liu R, Ji C, Mock J J, Chin J Y, Cui T J, Smith D R 2009 Science 323 366
[14] Valentine J, Li J, Zentgraf T, Bartal G, Zhang X 2009 Nature. Materials 8 568
[15] Ergin T, Stenger N, Brenner P, Pendry J B, Wegener M 2010 Science 328 337
[16] Ma H F, Cui T J 2010 Nat. Commu. 1 21
[17] Zhang B, Wu B I, Chen H S, Kong J A 2008 Phys. Rev. Lett. 101 063902
[18] Chen H Y, Zhang X H, Luo X D, Ma H, Chan Ch T 2008 New. J. Phys. 10 113016
[19] Lai Y, Ng J, Chen H Y, Han D Zh, Xiao J J, Zhang Zh Q, Chan C T 2009 Phys. Rev. Lett. 102 253902
[20] Pendry J B, Holden A J, Robbins D J, Stewart W J 1999 Trans. Microwave. Theory. Tech. 47 2099
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[1] Dolling G, Enkrich C, Wegener M, Soukoulis C M, Linden S 2006 Science 312 892
[2] Linden S, Enkrich C, Wegener M, Zhou J F, Koschny T, oukoulis C M S 2004 Science 306 1351
[3] Justice B J, Mock J J, Guo L H, Degiron A, Schurig D, Smith D R 2006 Opt. Express 14 9794
[4] Pendry J B 2000 Phys. Rev. Lett. 85 3966
[5] Zhuang F, Shen J Q 2005 Acta. Sin. Phys. 54 955 (in Chinese) [庄 飞、 沈建其 2005 54 955]
[6] Wang j F, Qu Sh B, Xu Zh, Zhang J Q, Ma H, Yang Y M, Gu Ch 2009 Acta. Sin. Phys. 58 3224 (in Chinese) [王甲富、 屈绍波、 徐 卓、 张介秋、 马 华、 杨一鸣、 顾 超 2009 58 3224]
[7] Wang X H, Qu Sh B, Xia S, Wang B K, Xu Zh, Ma H, Wang J F, Gu ch, Wu X, Lu L, Zhou H 2010 Chin. Phys. B 19 064101
[8] Ma H, Qu S B, Xu Z, Zhang J Q, Wang J F 2009 Chin. Phys. B 18 1025
[9] Pendry J B, Schurig D, Smith D R 2006 Science 312 1780
[10] Schurig D, Mock J J, Justice B J, Cummer S A, Pendry J B, Starr A F, Smith D R 2006 Science 314 977
[11] Cai W, Chettiar U K, Kildishev A V, Shalaev V M 2007 Nat. Photonics 1 224
[12] Li J, Pendry J B 2008 Phys. Rev. Lett. 101 203901
[13] Liu R, Ji C, Mock J J, Chin J Y, Cui T J, Smith D R 2009 Science 323 366
[14] Valentine J, Li J, Zentgraf T, Bartal G, Zhang X 2009 Nature. Materials 8 568
[15] Ergin T, Stenger N, Brenner P, Pendry J B, Wegener M 2010 Science 328 337
[16] Ma H F, Cui T J 2010 Nat. Commu. 1 21
[17] Zhang B, Wu B I, Chen H S, Kong J A 2008 Phys. Rev. Lett. 101 063902
[18] Chen H Y, Zhang X H, Luo X D, Ma H, Chan Ch T 2008 New. J. Phys. 10 113016
[19] Lai Y, Ng J, Chen H Y, Han D Zh, Xiao J J, Zhang Zh Q, Chan C T 2009 Phys. Rev. Lett. 102 253902
[20] Pendry J B, Holden A J, Robbins D J, Stewart W J 1999 Trans. Microwave. Theory. Tech. 47 2099
[21] Furlani E P, Baev A 2009 Phys. Rev. E 79 026607
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