Published May 1993 | Version v1
Report Open

Problems related to stimulated electromagnetic emissions, strong turbulence and ionospheric modification

  • 1. Swedish Institute of Space Physics, Uppsala Division, Uppsala (Sweden)

Description

Optical pumping of the ionospheric plasma by high-frequency radio waves produces a state of turbulence. Several consequences of the pumping are considered in this thesis. At reflection altitude the plasma is thought to be dominated by parametric instabilities and strong turbulence; these are both encapsulated in the so called Zakharov equations. The Zakharov equations are derived and generalised from kinetic theory. Limits of validity, corrections to the ion sound speed,effective ponderomotive force, nonlinear damping and other generalisation are included. As an example of the difference a kinetic approach makes, the threshold for parametric instabilities is seen to be lowered in a kinetic plasma. Mostly relevant to the upper hybrid layer is the recent discovery in the pumping experiments of stimulated electromagnetic emissions (SEE). In particular one feature of SEE which occurs around the cyclotron harmonics and depends on density striations is investigated. The observed frequency of emission, dependency on striations, time evolution and cutoff frequency below which the feature does not occur, are explained. Two theoretical approaches are taken. The first is a parametric three wave decay instability followed by a nonlinear mixing to produce SEE. Thresholds for the instability are well within experimental capacity. The second, less orthodox, approach, is a finite amplitude model. The finite amplitude model goes beyond the traditional parametric approach by being able to predict radiated power output. Miscellaneous aspects of a turbulent ionosphere are also examined. The dependency of the scattering cross section of a turbulent plasma upon higher order perturbations is considered. In a turbulent plasma, density gradients steeper than characteristic plasma scales may develop. The case of calculating the dielectric permittivity for a linear gradient of arbitrary steepness is considered

Availability note (English)

MF available from INIS under the Report Number.

Files

25001573.pdf

Files (1.7 MB)

Name Size Download all
md5:3bb9c849f979260caea039d05177cd84
1.7 MB Preview Download

Additional details

Publishing Information

Imprint Pagination
95 p.
ISSN
0284-1703
Report number
IRF--212

INIS

Country of Publication
Sweden
Country of Input or Organization
Sweden
INIS RN
25001573
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY; S58: GEOSCIENCES;
Resource subtype / Literary indicator
Numerical Data, Thesis
Descriptors DEI
ASTROPHYSICS; ELECTROMAGNETIC RADIATION; EXPERIMENTAL DATA; KINETIC EQUATIONS; OPTICAL PUMPING; PLASMA; PLASMA INSTABILITY; PLASMA WAVES; RADIOWAVE RADIATION
Descriptors DEC
DATA; EQUATIONS; INFORMATION; INSTABILITY; NUMERICAL DATA; RADIATIONS