• DocumentCode
    1142690
  • Title

    A Rigorous Analysis of Plane-Transformed Invisibility Cloaks

  • Author

    Luo, Yu ; Zhang, Jingjing ; Chen, Hongsheng ; Ran, Lixin ; Wu, Bae-Ian ; Kong, Jin Au

  • Author_Institution
    Electromagn. Acad., Zhejiang Univ., Hangzhou, China
  • Volume
    57
  • Issue
    12
  • fYear
    2009
  • Firstpage
    3926
  • Lastpage
    3933
  • Abstract
    The electromagnetic characteristics of plane-transformed invisibility cloaks are quantitatively studied in this paper. We take elliptical cylindrical cloak as the example, and use an elliptical cylindrical wave expansion method to obtain the scattered field. It is demonstrated that an ideal elliptical cylindrical cloak is inherently visible. Noticeable field scattering and penetration will be induced when the cloak is exposed directly to an electromagnetic wave. However, as long as the cloak consists of a perfect electric conducting lining at the interior surface, perfect invisibility can still be achieved along the direction parallel to the major axis of the cloak for transverse magnetic illumination. Another plane-transformed cloak with a conical geometry is also proposed. The advantage of this cloak is that all the permittivity and permeability elements are spatially invariant while none of them is singular. Hence, it is easily realizable with artificially structured metamaterials. Finally, the applications of this kind of cloak are discussed.
  • Keywords
    electromagnetic wave scattering; geometry; magnetic permeability; metamaterials; microwave materials; permittivity; artificially structured metamaterials; conical geometry; electric conducting lining; electromagnetic characteristics; electromagnetic wave; elliptical cylindrical cloak; elliptical cylindrical wave expansion; field scattering; permeability; permittivity; plane-transformed invisibility cloak; transverse magnetic illumination; Contracts; Electromagnetic analysis; Electromagnetic scattering; Geometrical optics; Gold; Magnetic materials; Metamaterials; Optical materials; Optical scattering; Optical surface waves; Particle scattering; Plasmons; Radio access networks; Artificially structured metamaterials; invisibility cloak; scattering characteristics; spatial coordinate transformation;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2009.2027824
  • Filename
    5169930