• DocumentCode
    1279664
  • Title

    Electrostatic Green´s functions for planar multilayered anisotropic media

  • Author

    Tan, E.L.

  • Author_Institution
    Centre for Wireless Commun., Singapore, Singapore
  • Volume
    149
  • Issue
    1
  • fYear
    2002
  • fDate
    2/1/2002 12:00:00 AM
  • Firstpage
    78
  • Lastpage
    83
  • Abstract
    This paper presents a concise 2×2 matrix formulation of the electrostatic Green´s functions for planar multilayered anisotropic media. The media may consist of any number of layers bounded by optional Dirichlet, Neumann or mixed walls. Both potential and normal-displacement Green´s functions for arbitrary field and source locations are determined simultaneously in the spectral domain. The optional boundary wall and open conditions are incorporated universally through the reflection coefficients which relate the upward-bounded and downward-bounded partial eigenfields. These coefficients avoid the indeterminate calculations that may occur for open structures or large spectral variables. The resultant Green´s function expressions are written in illuminating and explicit form ready to be utilised. For illustration., the grounded three-layered dielectric structure is considered analytically, along with simple extension to biaxial and symmetric anisotropic media. Numerical results are also demonstrated for the capacitance of microstrip on anisotropic substrates, including lithium niobate characterised by sets of permittivity at constant strain and constant stress
  • Keywords
    Green´s function methods; anisotropic media; electrostatics; inhomogeneous media; matrix algebra; spectral-domain analysis; Dirichlet walls; LiNbO3; Neumann walls; anisotropic substrates; biaxial anisotropic media; capacitance; downward-bounded partial eigenfields; electrostatic Green´s functions; grounded three-layered dielectric structure; matrix formulation; microstrip; mixed walls; normal displacement Green´s functions; permittivity; planar multilayered anisotropic media; potential Green´s functions; reflection coefficients; spectral domain; strain; stress; symmetric anisotropic media; upward-bounded partial eigenfields;
  • fLanguage
    English
  • Journal_Title
    Microwaves, Antennas and Propagation, IEE Proceedings
  • Publisher
    iet
  • ISSN
    1350-2417
  • Type

    jour

  • DOI
    10.1049/ip-map:20020184
  • Filename
    999107