Title :
Longitudinal electron oscillations in a cold plasma penetrated through by a beam of charged particles with anisotropic temperature
Author_Institution :
Plasma Phys. & Nucl. Fusion Dept., Atomic Energy Authority, Cairo, Egypt
Abstract :
A study is made for a gyrating electron beam interaction with a cold plasma in the presence of an external magnetic field. We derived the appropriate dielectric tensor components for a gyrating electron beam with anisotropic temperature (for different parallel T||a and perpendicular T⊥a temperatures with respect to external magnetic field H&oarr;0). The importance of special cases for isotropic (T||a=T⊥a) and anisotropic (T||a≪T⊥a, i.e., if T||a→0) beam temperature, is investigated. We derived the dispersion equation of longitudinal oscillations in a cold electronic plasma penetrated through by a beam of charged particles with anisotropic temperature (for different parallel T||a and perpendicular T⊥a temperatures). As an application, the derived dispersion relation is solved in due course to investigate the current-convective instability (CCI) due to helical beam-plasma interaction. We determined the self longitudinal plasma oscillations in the absence of the beam. We investigated the derived dispersion equation in the two special cases for isotropic (T||a=T⊥a ) and anisotropic (T||a≪T⊥a, i.e., if T||a→0) beam temperatures. The theory of a helical beam interaction with a plasma can be applied in astrophysics and in the study of the Sun-Earth environment. The study of instabilities in a system of gyrating charges is of special interest for elucidating the conditions of plasma confinement in magnetic traps
Keywords :
astrophysical plasma; electron beam effects; magnetic traps; plasma instability; plasma oscillations; plasma-beam interactions; anisotropic temperature; beam temperature; charged particles; cold plasma; current-convective instability; dielectric tensor components; dispersion equation; dispersion relation; external magnetic field; gyrating electron beam interaction; helical beam interaction; helical beam-plasma interaction; longitudinal electron oscillations; magnetic traps; plasma confinement; self longitudinal plasma oscillations; Anisotropic magnetoresistance; Dielectrics; Electron beams; Equations; Magnetic fields; Particle beams; Plasma applications; Plasma confinement; Plasma temperature; Tensile stress;
Conference_Titel :
Radio Science Conference, 2001. NRSC 2001. Proceedings of the Eighteenth National
Conference_Location :
Mansoura
Print_ISBN :
977-5031-68-0
DOI :
10.1109/NRSC.2001.929421