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Plasma Kinetics in an Alternating Electric Field
SelfAction of Plane Radio Waves
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absorption accordance with Equation alternating electric field angle approximation assumed average axis beam coefficients collision frequency collision integral consider cos2 cross modulation cross section cross-modulation depth curve decreases defocusing dependence dielectric constant diffusion dispersion equation effective elastic collisions electron and ion electron collisions electron density electron temperature excitation expression F layer field amplitude follows from Equation frequency Q Gurevich heating heights high-frequency high-power homogeneous increases inhomogeneities interaction kinetic linear low-frequency lower ionosphere magnetic field maximum Maxwellian molecules neglected nonlinear obtain oscillations parameter particles perturbations perturbed region plasma boundary plasma oscillations plasma waves polarization pulse radio waves recombination reflection point resonance satisfied Sect seen from Equation shown in Figure solution of Equation stationary strong Substituting Equations taken into account takes the form tensors thermal thermal conductivity tion wave E2 wave field wave propagates wave vector weakly ionized plasma