{"browseNum":16206} Theoretical analysis of constitutive parameters for the periodic magnetic resonator metamaterials

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Theoretical analysis of constitutive parameters for the periodic magnetic resonator metamaterials

Xu Xin-He Xiao Shao-Qiu Gan Yue-Hong Wang Bing-Zhong

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Theoretical analysis of constitutive parameters for the periodic magnetic resonator metamaterials

Xu Xin-He, Xiao Shao-Qiu, Gan Yue-Hong, Wang Bing-Zhong
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  • The thin magnetic resonance dielectric plate is equivalent to a surface magnetic current. Using periodic boundary conditions, the exponential form of the surface magnetic current density is given. The dispersion relation and Bloch impedance of a periodic magnetic resonator metamaterial are derived by calculating the total electric and magnetic fields at the different positions excited by the infinite number of surface magnetic currents, and thus the theoretical formulas for Bloch constitutive parameters are obtained. Since the electric anti-resonance influence on the Bloch permittivity and permeability of magnetic resonator metamaterial is considered, thus the Bloch constitutive parameter difference between theoretical values and retrieval results based on simulations is very small, which shows that the Bloch constitutive parameter formula derived in the paper is very effective to describe the electromagnetic properties of the periodic magnetic resonant material. These theoretical formulas will provide important theoretical basis for the interpretation of the magnetic resonance phenomenon, the design and optimization of the periodic magnetic resonant material.
    • Funds: Project supported by the National Natural Science Foundation of China (Grant Nos. 60971029, 60872034, 61271028).
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    Veselago V G 1968 Sov. Phys. Usp. 10 509

    [2]

    Shelby R A, Smith D R, Schultz S 2001 Science 292 77

    [3]

    Pendry J B 2000 Phys. Rev. Lett. 85 3966

    [4]

    Schurig D R, Mock J J, Smith D R 2006 Appl. Phys. Lett. 88 041109

    [5]

    Pendry J B, Holden A J, Robbins D J 1999 IEEE Trans. Microwave Theory Tech. 47 2075

    [6]

    Li J C, Guo L X, Liu S H 2012 Acta Phys. Sin. 61 124102 (in Chinese) [李俊成, 郭立新, 刘松华 2012 物理学报 61 124102]

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    Yang C, Zhang H X, Wang H X, Xu N, Xu Y Y, Huang L Y, Zhang K X 2012 Acta Phys. Sin. 61 164101 (in Chinese) [杨晨, 张洪欣, 王海侠, 徐楠, 许媛媛, 黄丽玉, 张可欣 2012 物理学报 61 164101]

    [8]

    Xu X H, Xiao S Q, Gan Y H, Fu C F, Wang B Z 2012 Acta Phys. Sin. 61 124103 (in Chinese) [徐新河, 肖绍球, 甘月红, 付崇芳, 王秉中 2012 物理学报 61 124103]

    [9]

    Dai X Y, Wen S C, Xiang Y J 2008 Chin. Phys. B 17 186

    [10]

    Liu R, Cui T J, Huang D, Zhao B, Smith D R 2007 Phys. Rev. E 76 026606

    [11]

    Smith D R 2010 Phys. Rev. E 81 03660

    [12]

    Smith D R, Schultz S 2002 Phys. Rev. B 65 195104

    [13]

    Smith D R, Pendry J B 2006 J. Opt. Soc. Am. B 23 391

    [14]

    Smith D R, Vier D C, Koschny T, Soukoulis C M 2005 Phys. Rev. E 71 036617

    [15]

    Chen X, Grzegorczyk T M, Wu B I, Pacheco Jr J, Kong J A 2004 Phys. Rev. E 70 016608

    [16]

    Gong J Q, Liang C H 2011 Acta Phys. Sin. 60 059204 (in Chinese) [龚建强, 梁昌洪 2011 物理学报 60 059204]

    [17]

    Varadan V, Sheng Z, Penumarthy S, Puligalla S 2006 Microwave Opt. Technol. Lett. 48 1549

    [18]

    Chen H S 2005 Ph. D. Dissertation (Hangzhou: Zhejiang University) (in Chinese) [陈红胜2005 博士学位论文(杭州: 浙江大学)]

  • [1]

    Veselago V G 1968 Sov. Phys. Usp. 10 509

    [2]

    Shelby R A, Smith D R, Schultz S 2001 Science 292 77

    [3]

    Pendry J B 2000 Phys. Rev. Lett. 85 3966

    [4]

    Schurig D R, Mock J J, Smith D R 2006 Appl. Phys. Lett. 88 041109

    [5]

    Pendry J B, Holden A J, Robbins D J 1999 IEEE Trans. Microwave Theory Tech. 47 2075

    [6]

    Li J C, Guo L X, Liu S H 2012 Acta Phys. Sin. 61 124102 (in Chinese) [李俊成, 郭立新, 刘松华 2012 物理学报 61 124102]

    [7]

    Yang C, Zhang H X, Wang H X, Xu N, Xu Y Y, Huang L Y, Zhang K X 2012 Acta Phys. Sin. 61 164101 (in Chinese) [杨晨, 张洪欣, 王海侠, 徐楠, 许媛媛, 黄丽玉, 张可欣 2012 物理学报 61 164101]

    [8]

    Xu X H, Xiao S Q, Gan Y H, Fu C F, Wang B Z 2012 Acta Phys. Sin. 61 124103 (in Chinese) [徐新河, 肖绍球, 甘月红, 付崇芳, 王秉中 2012 物理学报 61 124103]

    [9]

    Dai X Y, Wen S C, Xiang Y J 2008 Chin. Phys. B 17 186

    [10]

    Liu R, Cui T J, Huang D, Zhao B, Smith D R 2007 Phys. Rev. E 76 026606

    [11]

    Smith D R 2010 Phys. Rev. E 81 03660

    [12]

    Smith D R, Schultz S 2002 Phys. Rev. B 65 195104

    [13]

    Smith D R, Pendry J B 2006 J. Opt. Soc. Am. B 23 391

    [14]

    Smith D R, Vier D C, Koschny T, Soukoulis C M 2005 Phys. Rev. E 71 036617

    [15]

    Chen X, Grzegorczyk T M, Wu B I, Pacheco Jr J, Kong J A 2004 Phys. Rev. E 70 016608

    [16]

    Gong J Q, Liang C H 2011 Acta Phys. Sin. 60 059204 (in Chinese) [龚建强, 梁昌洪 2011 物理学报 60 059204]

    [17]

    Varadan V, Sheng Z, Penumarthy S, Puligalla S 2006 Microwave Opt. Technol. Lett. 48 1549

    [18]

    Chen H S 2005 Ph. D. Dissertation (Hangzhou: Zhejiang University) (in Chinese) [陈红胜2005 博士学位论文(杭州: 浙江大学)]

Metrics
  • Abstract views:  5615
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  • Cited By: 0
Publishing process
  • Received Date:  29 August 2012
  • Accepted Date:  22 October 2012
  • Published Online:  05 May 2013

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