• DocumentCode
    770295
  • Title

    High-frequency Green´s function for a semi-infinite array of electric dipoles on an infinite grounded stratified dielectric slab: part II-spatial domain parameterization

  • Author

    Maci, S. ; Toccafondi, A. ; Polemi, A. ; Felsen, L.B.

  • Author_Institution
    Dept. of Inf. Eng., Univ. of Siena, Italy
  • Volume
    53
  • Issue
    4
  • fYear
    2005
  • fDate
    4/1/2005 12:00:00 AM
  • Firstpage
    1364
  • Lastpage
    1376
  • Abstract
    This second part of a three-paper sequence deals with the spatial domain parametrization and physical interpretation of the relevant asymptotic high-frequency Green´s function for a semi-infinite phased array of parallel dipoles on an infinite stratified grounded dielectric slab. This array Green´s function (AGF) has been previously derived using a spectral domain formulation; the relevant asymptotic solution contains contributions associated with Floquet waves (FWs), and corresponding surface, leaky and diffracted waves excited at the array edge. Both the truncated-FW series and the series of corresponding diffracted field contributions exhibit excellent convergence properties. In the present paper, through application of the Poisson summation, the AGF for a plane-stratified grounded dielectric slab is developed in terms of space domain FW-dependent Kirchhoff radiation integrals which are synthesized by superposition of periodicity-modulated phased line sources oriented parallel to the edge. The asymptotic evaluation of each Kirchhoff radiation integral leads to a grouping of various asymptotic terms, which provide physically appealing interpretations of a variety of wave processes, encompassing slab-modulated propagating (radiating) and evanescent (nonradiating) FWs, slab-guided surface waves (SWs) or leaky waves (LWs), and their edge-coupled phenomenologies. The present space domain parametrization leads to the same asymptotics as that from the spectral domain parametrization, but allows a clear description of the spatial wave interaction processes.
  • Keywords
    Green´s function methods; antenna phased arrays; convergence; dipole antenna arrays; electromagnetic wave diffraction; electromagnetic wave propagation; leaky wave antennas; microstrip antenna arrays; phase modulation; surface electromagnetic waves; AGF; Floquet wave; LW; Poisson summation; SW; asymptotic evaluation; convergence property; diffracted wave excitation; edge-coupled phenomenology; electric dipole; high-frequency array Green´s function; infinite grounded stratified dielectric slab; leaky wave; parallel dipole; patch array antenna; periodicity-modulated phased fine source; physical interpretation; semiinfinite phased array; slab-guided surface waves; slab-modulated propagation; space domain FW-dependent Kirchhoff radiation integral; spatial domain parametrization; spectral domain formulation; truncated evanescent FW series; Antenna arrays; Dielectrics; Diffraction; Frequency; Green´s function methods; Helium; Linear antenna arrays; Phased arrays; Slabs; Surface waves; Diffraction; high frequency; patch array antennas;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2005.844445
  • Filename
    1417216