A plane electromagnetic wave is obliquely incident upon a plasma layer of finite thickness, where the equilibrium plasma is taken to be homogeneous and isotropic. The electric vector of the wave is assumed polarized in the plane of incidence. The specular boundary condition for the distribution function is employed and an exact solution of the coupled Maxwell‐Vlasov equations is derived as an expansion in normal modes, yielding coupled tranverse and longitudinal waves in the plasma region. Temperature effects on the reflection coefficient are investigated.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/71062/2/PFLDAS-11-3-601-1.pd
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In this paper we have treated the case of reflection and refraction of plasma electromagnetic wave b...
The dispersion relation for circularly polarized electromagnetic waves in a warm two‐component plasm...
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A radio frequency electromagnetic wave, polarized in the plane of incidence is incident obliquely up...
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In the present article a linear theory is developed for the absorption and conversion of electromagn...
The reflection of a test electromagnetic wave normally impinging on a plasma surface is investigated...
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International audienceIn this paper, we study the electromagnetic response of a cold plasma with dis...
Differential equation for passage of plane electromagnetic waves through plane-parallel inhomogeneou...
Abstract—This paper aims at developing a technique to calculate the reflection, absorption, and tran...
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In this paper we have treated the case of reflection and refraction of plasma electromagnetic wave b...
The dispersion relation for circularly polarized electromagnetic waves in a warm two‐component plasm...
Using simple waves and six-vector formalism, the propagation of electromagnetic waves in nonlinear, ...