Published 1982 | Version v1
Report

Modification of the ionosphere by VLF wave-induced electron precipitation

Description

Very low frequency (VLF) waves propagating in the whistler mode in the magnetosphere are known to cause precipitation of energetic electrons at middle latitudes. The interactions between the waves and electrons trapped in the magnetic field are believed to occur through cyclotron resonance. As a monochromatic wave propagates along a field line, the condition for resonance can be satisfied by electrons of a minimum energy at the equator and higher energies at increasing latitudes. Resonant interactions occurring in a field aligned region extending several thousand kilometers on both sides of the equator can therefore result in a precipitation flux with a wide range of energies. Electrons which are scattered into the loss cone will collide with the constituents of the ionosphere, causing additional ionization optical emissions, x-rays and heating. A computational technique is introduced which allows the temporal shape of pulse of precipitation to be modeled. A realistic energy distribution is used to weigh the contribution to the total precipitation energy flux resulting from resonant interactions in each segment of the duct. Wave growth along the path is found to affect the shape of the pulse. In its simplest application, the model sets limits on the time window in which a precipitation event can occur. The model arrival times are shown to agree with experimental correlations of VLF waves and effects of precipitation occurring on three occasions, thus supporting the assumption, that the precipitation results from cyclotron resonant scattering. Various techniques that have been employed for detecting wave-induced precipitation are compared. A quantitative analysis of the use of an HF radar for this purpose is introduced, based on the changes in the phase and group paths of the radar signals that are reflected from the perturbed ionosphere

Availability note (English)

University Microfilms Order No. 82-14,568.

Additional details

Publishing Information

Imprint Pagination
197 p.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
14783095
Subject category
S58: GEOSCIENCES;
Resource subtype / Literary indicator
Thesis, Non-conventional Literature
Descriptors DEI
CYCLOTRON RESONANCE; EARTH MAGNETOSPHERE; ELECTRON DENSITY; ELECTRON PRECIPITATION; ENERGY SPECTRA; IONOSPHERE; LATITUDE EFFECT; LOSS CONE; MATHEMATICAL MODELS; RADAR; WAVE PROPAGATION
Descriptors DEC
CHARGED-PARTICLE PRECIPITATION; EARTH ATMOSPHERE; RESONANCE; SPECTRA