• DocumentCode
    1211597
  • Title

    Rectangular waveguide with dielectric-filled corrugations supporting backward waves

  • Author

    Eshrah, Islam A. ; Kishk, Ahmed A. ; Yakovlev, Alexander B. ; Glisson, Allen W.

  • Author_Institution
    Dept. of Electr. Eng., Univ. of Mississippi, MS, USA
  • Volume
    53
  • Issue
    11
  • fYear
    2005
  • Firstpage
    3298
  • Lastpage
    3304
  • Abstract
    A new application for corrugated waveguides as left-handed (LH) meta-material guided-wave structures is investigated. The waveguide is operated below the cutoff of the dominant mode, where the waveguide has an inherent shunt inductance. The dielectric-filled corrugations are used to provide a series capacitance, which, along with the shunt inductance, create the necessary environment to support backward waves. A simple equivalent-circuit model is constructed, and proves quite accurate in determining the dispersion, as well as the scattering characteristics of the structure. Experimental verification of the occurrence of backward waves in the corrugated waveguide is presented. Very good agreement between the results obtained using the equivalent-circuit model and the full-wave finite-difference time-domain solution is achieved. The effect of the various design parameters on the LH propagation bandwidth is investigated. The advantages and possible applications of the structure are discussed.
  • Keywords
    dielectric materials; dielectric-loaded waveguides; electromagnetic wave scattering; equivalent circuits; finite difference methods; inductance; method of moments; rectangular waveguides; time-domain analysis; LH propagation bandwidth; backward wave; corrugated waveguide; dielectric-filled corrugation; equivalent-circuit model; full-wave finite-difference time-domain method; left-handed metamaterial guided-wave structure; metamaterial transmission lines; moment methods; periodic structure; rectangular waveguide; scattering characteristic; series capacitance; shunt inductance; Bandwidth; Capacitance; Circuit analysis; Dielectrics; Finite difference methods; Inductance; Metamaterials; Rectangular waveguides; Scattering; Time domain analysis; Corrugated waveguide; metamaterial transmission lines; moment methods; periodic structure;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2005.855748
  • Filename
    1528778