Transmission and reflection of electromagnetic waves normally incident on a warm plasma.
Electric field normally incident onto warm semiinfinite plasma obtained by Wiener-Hopf technique and Vlasov equation
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Electric field normally incident onto warm semiinfinite plasma obtained by Wiener-Hopf technique and Vlasov equation
Velocity field of conducting fluid interaction with electromagnetic fields, noting applications to electric propulsion, MGD power generation and reentry
Time decay calculations of cyclotron harmonic signal and application to Alouette satellite
Observations, results, and mathematical theory of Alouette satellite cyclotron harmonics resonances
Demodulation of amplitude modulated radio frequency waves in plasma at resonance
Energy coupling among electron acoustic, ion acoustic and transverse electromagnetic waves at two-fluid plasma density discontinuity
Spectral densities of electromagnetic fields of thermal radiation in magnetoplasma as related to radiation resistance of immersed antenna
Current distribution and input admittance of infinitely long cylindrical antenna driven by slice generator and immersed in anisotropic plasma
Enhanced plasma fluctuations produced by suprathermal electron effect on emission and scattering of electromagnetic waves, noting analogy with corona plasma
Electron temperature vs plasma cell power input measured, determining electron energy loss factor for hot diatomic gases in electric field
Oscillator strengths for extreme UV resonance lines of ions in neon isoelectronic sequence calculated, based on single configurations in intermediate coupling
Electrostatic wave effect on anisotropic relativistic proton plasma in magnetic field, noting instability
Gas ionization and plasma heating by high power microwaves using X-band and S-band frequency magnetrons
Weak electromagnetic decays of hyperons in broken SU/3/ model
Excited nuclei electromagnetic de-excitation rate by inelastic scattering in stellar particles calculated as function of temperature, density, transition energy and multipole functions
Study involves the effects of the interactions of electromagnetic, velocity, and temperature fields to aid in the design of a magnetohydrodynamic device. It concerns a theoretical analysis of the convective flow of an electrically conducting gas in a channel composed of conducting walls.
Electron beam - electromagnetic wave interactions and power exchanges
Microwave electron density probe based on plasma- electromagnetic field interaction