Physics of Plasmas · 2016 · 15 citations · 39 references
EngineeringPlasma SciencePlasma PhysicsSpace Plasma PhysicPlasma TheoryPlasma SimulationMagnetohydrodynamicsPolarization ForcePhysicsFundamental Plasma PhysicAtomic PhysicsPlasma InstabilitySpace WeatherNuclear AstrophysicsJeans InstabilityNatural SciencesApplied PhysicsNeutral ParticlesDusty Plasma
The influence of dust-neutral collisions, polarization force, and electron radiative condensation is analysed on the Jeans (gravitational) instability of partially ionized strongly coupled dusty plasma (SCDP) using linear perturbation (normal mode) analysis. The Boltzmann distributed ions, dynamics of inertialess electrons, charged dust and neutral particles are considered. Using the plane wave solutions, a general dispersion relation is derived which is modified due to the presence of dust-neutral collisions, strong coupling effect, polarization force, electron radiative condensation, and Jeans dust/neutral frequencies. In the long wavelength perturbations, the Jeans instability criterion depends upon strong coupling effect, polarization interaction parameter, and thermal loss, but it is independent of dust-neutral collision frequency. The stability of the considered configuration is analysed using the Routh–Hurwitz criterion. The growth rates of Jeans instability are illustrated, and stabilizing influence of viscoelasticity and dust-neutral collision frequency while destabilizing effect of electron radiative condensation, polarization force, and Jeans dust-neutral frequency ratio is observed. This work is applied to understand the gravitational collapse of SCDP with dust-neutral collisions.
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Dust-acoustic waves in dusty plasmas
N. N. Rao, P. K. Shukla, M. Y. Yu · Planetary and Space Science · 1990 · 2.2K citations