• DocumentCode
    1232370
  • Title

    The Poynting Vector in the Ionosphere

  • Author

    Scott, James C W

  • Author_Institution
    Radio Propagation Laboratory, Defence Research Board, Ottawa, Ontario, Canada
  • Volume
    38
  • Issue
    9
  • fYear
    1950
  • Firstpage
    1057
  • Lastpage
    1068
  • Abstract
    The equations of motion of ionospheric electrons in the field of plane electromagnetic waves subject to the frictional force of collision and to the force of the earth´s magnetic field are developed in a form permitting graphical calculation of the wave polarization. The complex Poynting vector is then calculated in terms of the polarization, the complex refractive index, and a third function related to the forward tilt of the electric vector. Graphical integration is used to obtain curves representing the direction of energy flow for the ordinary and extraordinary modes, in a parabolic distribution of ionization for fixed values of geomagnetic latitude, collision frequency, and wave frequency for the case of vertical wave propagation. When collision is taken into account, the deflection has a small westward component for both ordinary and extraordinary modes. At zero collision frequency the deflections are in the vertical plane of the earth´s field; the ordinary mode bending towards the poles and the extraordinary mode towards the equator. The normal ionization gradient with latitude, together with diurnal expansion and contraction of the ionized region, can explain the diurnal variation in the fz-f0critical frequency difference as due to the diurnal variation in the total path deflection.
  • Keywords
    Earth; Electromagnetic scattering; Electromagnetic wave polarization; Electrons; Equations; Frequency; Ionization; Ionosphere; Magnetic fields; Refractive index;
  • fLanguage
    English
  • Journal_Title
    Proceedings of the IRE
  • Publisher
    ieee
  • ISSN
    0096-8390
  • Type

    jour

  • DOI
    10.1109/JRPROC.1950.229828
  • Filename
    1701378