• DocumentCode
    55386
  • Title

    Corrugated Waveguide Mode Content Analysis Using Irradiance Moments

  • Author

    Jawla, Sudheer K. ; Shapiro, Michael A. ; Idei, Hiroshi ; Temkin, Richard J.

  • Author_Institution
    Plasma Sci. & Fusion Center, Massachusetts Inst. of Technol., Cambridge, MA, USA
  • Volume
    42
  • Issue
    10
  • fYear
    2014
  • fDate
    Oct. 2014
  • Firstpage
    3358
  • Lastpage
    3364
  • Abstract
    We present a novel, relatively simple method for determining the mode content of the linearly polarized modes of a corrugated waveguide using the moments of the intensity pattern of the field radiated from the end of the waveguide. This irradiance moment method is based on calculating the low-order irradiance moments, using measured intensity profiles only, of the radiated field from the waveguide aperture. Unlike the phase retrieval method, this method does not use or determine the phase distribution at the waveguide aperture. The new method was benchmarked numerically by comparison with sample mode mixtures. The results predict less than ±0.7% error bar in the retrieval of the mode content. The method was also tested using high-resolution experimental data from beams radiated from 63.5 mm and 19 mm corrugated waveguides at 170 and 250 GHz, respectively. The results showed a very good agreement of the mode content retrieved using the irradiance moment method versus the phase retrieval technique. The irradiance moment method is most suitable for cases where the modal power is primarily in the fundamental HE11 mode, with <;8% of the power in high-order modes.
  • Keywords
    method of moments; waveguides; HE11 mode; corrugated waveguide mode content analysis; irradiance moment method; linearly polarized modes; low-order irradiance moments; phase retrieval method; waveguide aperture; Apertures; Couplings; Equations; Gyrotrons; Mathematical model; Optical waveguides; Transmission line measurements; Corrugated waveguide; irradiance moments and phase retrieval; quasi-optical beam; waveguide modes;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2014.2349797
  • Filename
    6891353