欢迎登录材料期刊网

材料期刊网

高级检索

主要对不同吸波机理扩展超材料微波吸收体衰减吸收频带的研究现状进行了综述,包括基于谐振吸收、加载集总元件、加载电阻材料的频带扩展方法以及通过可调超材料实现超材料吸波体的智能化吸收和宽频吸收的方法,重点讨论了分形学曲线在超材料设计中的应用,分析了其能通过小的尺寸实现低频谐振吸收的优点以及分形学图案自带的频带扩展能力,提出了分形学曲线和图案是未来超材料吸波体发展的一个重要途径.

参考文献

[1] VESELAGO V G .The electrodynamics of substances with simultaneously negative values of ε and μ[J].Soviet Physics Uspekhi,1968,10(04):509-514.
[2] Smith DR.;Vier DC.;Nemat-Nasser SC.;Schultz S.;Padilla WJ. .Composite medium with simultaneously negative permeability and permittivity[J].Physical review letters,2000(18):4184-4187.
[3] PENDRY J B;PENDRY A J;STEWART W J .Extremely low frequency plasmons in metallic mesostructures[J].Physical Review Letters,1996,76(25):4758-4776.
[4] Pendry JB.;Robbins DJ.;Stewart WJ.;Holden AJ. .Low frequency plasmons in thin-wire structures[J].Journal of Physics. Condensed Matter,1998(22):4785-4809.
[5] BROWN J .Artificial dielectrics[J].Progress in Dielectrics,1960,2:195-225.
[6] KHAN M F;MUGHAL M J.Modified single side paired S-ring resonators[A].London:IEEE,2009:522-524.
[7] Juan D. Baena;Ricardo Marques;Francisco Medina;Jesus Martel .Artificial magnetic metamaterial design by using spiral resonators[J].Physical Review.B.Condensed Matter,2004(1):014402.1-014402.5.
[8] R. Liu;C. Ji;J.J. Mock;J.Y. Chin;T.J. Cui;D.R. Smith .Broadband Ground-plane Cloak[J].Science,2009(5912):366-369.
[9] 刘凌云,胡长寿,郭彪.超材料吸波体吸波特性研究[J].材料导报,2010(10):1-3,18.
[10] N.I. Landy;S. Sajuyigbe;J.J. Mock;D.R. Smith;W. J. Padilla .Perfect Metamaterial Absorber[J].Physical review letters,2008(20):279-282.
[11] Hiroki Wakatsuchi;John Paul;Stephen Greedy;Christos Christopoulos .Cut-Wire Metamaterial Design Based on Simplified Equivalent Circuit Models[J].IEEE Transactions on Antennas and Propagation,2012(8):3670-3678.
[12] LIU X L;STARR T;STARR A F et al.Infrared spatial and frequency selective metamaterial with near-unity absorbance[J].Physical Review Letters,2010,104:207403.
[13] 胡长寿,刘凌云,裴嘉政.对电磁波极化不敏感超材料吸波体的研究[J].光学与光电技术,2010(04):83-86.
[14] Cheng, Y.;Yang, H.;Cheng, Z.;Wu, N. .Perfect metamaterial absorber based on a split-ring-cross resonator[J].Applied physics, A. Materials science & processing,2011(1):99-103.
[15] Tao, H.;Bingham, C.M.;Pilon, D.;Fan, K.;Strikwerda, A.C.;Shrekenhamer, D.;Padilla, W.J.;Zhang, X.;Averitt, R.D. .A dual band terahertz metamaterial absorber[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,2010(22):225102-1-225102-5.
[16] LI M H;YANG H L;HOU X W et al.Perfect metamaterial absorb with dual bands[J].Progress in Electromagnetics Research,2010,108:37-49.
[17] LUO Hao,WANG Tao,GONG Rong-Zhou,NIE Yan,WANG Xian.Extending the Bandwidth of Electric Ring Resonator Metamaterial Absorber[J].中国物理快报(英文版),2011(03):85-88.
[18] SUN J B;LIU L Y;DONG G Y et al.An extremely broad band metamaterial absorber based on destructive interference[J].Optics Express,2011,19(22):21155-21162.
[19] 顾超,屈绍波,裴志斌,徐卓,柏鹏,彭卫东,林宝勤.基于磁谐振器加载的宽频带超材料吸波体的设计[J].物理学报,2011(08):656-661.
[20] 孙良奎,程海峰,周永江,王军,庞永强.一种基于超材料的吸波材料的设计与制备[J].物理学报,2011(10):750-754.
[21] 顾超,屈绍波,裴志斌,徐卓,林宝勤,周航,柏鹏,顾巍,彭卫东,马华.基于电阻膜的宽频带超材料吸波体的设计[J].物理学报,2011(08):662-666.
[22] 程用志,聂彦,龚荣洲,郑栋浩,范跃农,熊炫,王鲜.基于超材料与电阻型频率选择表面的薄型宽频带吸波体的设计[J].物理学报,2012(13):130-136.
[23] Ignacio Gil;Jordi Bonache;Joan Garcia-Garcia;Ferran Martin .Tunable Metamaterial Transmission Lines Based on Varactor-Loaded Split-Ring Resonators[J].IEEE Transactions on Microwave Theory and Techniques,2006(6):2665-2674.
[24] Aydin K;Ozbay E .Capacitor-loaded split ring resonators as tunable metamaterial components[J].Journal of Applied Physics,2007(2):24911-1-24911-5-0.
[25] EKMEKCI E;TOPALLI K;AKIN T et al.A tunable multiband metamaterial design using micro-split SRR structures[J].Optics Express,2009,17(18):16046-16058.
[26] YE Q W;LIN H;CHEN X Q.A tunable metamaterial absorber made by micro-gaps structures[A].Harbin,China:IEEE,2011:234-237.
[27] Hand T.;Cummer S. .Characterization of Tunable Metamaterial Elements Using MEMS Switches[J].IEEE antennas and wireless propagation letters,2007(1):401-404.
[28] ENGHETA N.Thin absorbing screens using metamaterial surfaces[A].San Antonio,Texas:IEEE,2002:392-395.
[29] McVay J.;Engheta N.;Hoorfar A. .High impedance metamaterial surfaces using Hilbert-curve inclusions[J].IEEE microwave and wireless components letters: A publication of the IEEE Microwave Theory and Techniques Society,2004(3):130-132.
[30] McVAY J;HOORFAR A;ENGHETA N.Thin absorbers using space-filling-curve high-impedance surfaces[A].Washington,DC:IEEE,2005:22-25.
[31] NOOR A;HU Z.Effects of spacer parameters on resistive Hilbert curve array absorbers[A].Singapore:IEEE,2009:602-605.
[32] Noor A.;Hu Z. .Dual polarised wideband metamaterial radar absorbing screen based on resistive Hilbert curve array[J].Electronics Letters,2009(2):130-131.
[33] 张燕萍,赵晓鹏,保石,罗春荣.基于阻抗匹配条件的树枝状超材料吸收器[J].物理学报,2010(09):6078-6083.
[34] Leila Yousefi;Omar M. Ramahi .Artificial Magnetic Materials Using Fractal Hilbert Curves[J].IEEE Transactions on Antennas and Propagation,2010(8):2614-2622.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%