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Multistation observations of the azimuth, polarization, and frequency dependence of ELF/VLF waves generated by electrojet modulation
Author(s) -
Maxworth A. S.,
Gołkowski M.,
Cohen M. B.,
Moore R. C.,
Chorsi H. T.,
Gedney S. D.,
Jacobs R.
Publication year - 2015
Publication title -
radio science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.371
H-Index - 84
eISSN - 1944-799X
pISSN - 0048-6604
DOI - 10.1002/2015rs005683
Subject(s) - azimuth , electrojet , amplitude , ionosphere , physics , polarization (electrochemistry) , geophysics , radio wave , geology , computational physics , optics , magnetic field , earth's magnetic field , chemistry , quantum mechanics
Modulated ionospheric heating experiments are performed with the High Frequency Active Auroral Research Program facility in Gakona, Alaska, for the purpose of generating extremely low frequency (ELF) and very low frequency (VLF) waves. Observations are made at three different azimuths from the heating facility and at distances from 37 km to 99 km. The polarization of the observed waves is analyzed in addition to amplitude as a function of modulation frequency and azimuth. Amplitude and eccentricity are observed to vary with both azimuth and distance from the heating facility. It is found that waves radiated at azimuths northwest of the facility are generated by a combination of modulated Hall and Pedersen currents, while waves observed at other azimuths are dominated by modulated Hall currents. We find no evidence for vertical currents contributing to ground observations of ELF/VLF waves. Observed amplitude peaks near multiples of 2 kHz are shown to result from vertical resonances in the Earth‐ionosphere waveguide, and variations of the frequency of these resonances can be used to determine the D region ionosphere electron density profile in the vicinity of the HF heater.