Quasi-linear theory of plasma waves.
Plasma wave quasi-linear theory, noting nonlinear effect treatment via distribution function, electric field, Fourier component decay, etc
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Plasma wave quasi-linear theory, noting nonlinear effect treatment via distribution function, electric field, Fourier component decay, etc
Kinetic theory of surface wave in plasma wave guide
Plasma wave theory and experiments, emphasizing stable Maxwellian plasmas and transverse and longitudinal wave modes in zero and nonzero magnetic fields
Longitudinal plasma waves collision damping calculations using Rostoker test particle method
Plasma wave echo, observing oscillatory behavior of perturbed distribution with different phases and amplitudes
Transverse and longitudinal plasma wave instabilities for two counterstreaming neutral hydrogen plasmas without external fields
Very low frequency electric and magnetic wave measurements for Mariner Venus Mercury 1973 mission
Transformation of electric field at propagation of acoustic waves and their transition into plasma waves
Stable Maxwellian plasma wave modes, theoretical and experimental treatment
Upper limits to radiation temperatures from plasma waves for emissions near the fundamental and second harmonic of the electron plasma frequency are derived in terms of effective temperature for plasma waves. Results are obtained that differ from those of Melrose (1970) by a factor that can exceed 40,000 for some plasmas.
Coupling equations are derived for the general case of nonlinear coupling of any wave modes in a cold magnetized plasma with particle drift motions. Specifically, the transformation of electrostatic waves is studied in connection with solar type-III radiation. A relevant numerical analysis is also presented.
Supraluminous longitudinal plasma wave scattering by localized inhomogeneity in thermal plasma density, calculating far field electromagnetic radiation production
The linearized response of a Vlasov plasma to the steady-state excitation of transverse plasma waves along an external magnetic field is examined. Assuming a delta-function excitation mechanism, and performing a detailed Vlasov-Maxwell equation analysis using Fourier-Laplace transforms, the plasma response is found to consist of three terms: a branch-cut term, a free-streaming term, and a dielectric-pole term. Also considered is the phenomenon of plasma wave echoes. The case of longitudinal electrostatic waves is extended to the case of transverse plasma waves that propagate along an external magnetic field. It is shown that a transverse echo results in lowest order only when one excitation is transverse and the other is longitudinal.
Interstellar plasma wave damping by relativistic suprathermal particles, noting magnetosonic and Alfven waves
Conversion of electrostatic plasma wave into electromagnetic wave
Weakly nonlinear dispersive cold plasma waves propagation by two time scale expansion, taking into account amplitude dispersion and coupling
Ionospheric E region irregularities produced by nonlinear coupling of unstable plasma waves