• DocumentCode
    826864
  • Title

    Controlling the Bandlimits of TE-Surface Wave Propagation Along a Modulated Microstrip-Line-Based High Impedance Surface

  • Author

    Matekovits, Ladislau ; Colomé, Guillermo Carlos Vietti ; Orefice, Mario

  • Author_Institution
    Dept. of Electron., Politec. di Torino, Torino
  • Volume
    56
  • Issue
    8
  • fYear
    2008
  • Firstpage
    2555
  • Lastpage
    2562
  • Abstract
    A hybrid numerical-analytical method for the characterization of the propagation of the transverse-electric surface waves along a high impedance surface (HIS) is presented. The HIS is obtained by a 2-D periodic repetition of a rectangular unit cell on a Cartesian grid. The unit cell consists of a microstrip line with variable width immersed in a grounded multilayer dielectric substrate. Inside the unit cell, the effective value of the dielectric is sinusoidally modulated along the direction of the microstrip line, and the dimension of the unit cell is equal to the period of the modulation. On the basis of the modulation parameters, limits of the stop/pass bands are determined analytically employing Mathieu´s functions. The synthesis of the shape of the microstrip line that guarantees the desired modulation requires the numerical determination of the phase velocity - line width relationship which is not known in closed form for the considered unbounded open structure. The limits of the pass/stop bands determined analytically are in very good agreement with those found numerically and measured values for different modulation parameters.
  • Keywords
    TEM cells; microstrip lines; numerical analysis; waveguide theory; 2D periodic repetition; Cartesian grid; Mathieus functions; TE-surface wave propagation; grounded multilayer dielectric substrate; hybrid numerical-analytical method; microstrip-line-based high impedance surface; modulation parameters; phase velocity-line width relationship; rectangular unit cell; transverse-electric surface waves; Frequency; Holography; Metamaterials; Microstrip; Optical scattering; Optical surface waves; Periodic structures; Surface acoustic waves; Surface impedance; Surface waves; Electromagnetic band gap (EBG); high impedance surface (HIS); microstrip; surface impedance synthesis;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2008.927524
  • Filename
    4589123