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Cylindrical and spherical dust ion–acoustic solitary waves

Physics of Plasmas · 2002 · Vol. 9(4) · pp. 1468–1470
A. A. MamunP. K. Shukla

Abstract

The properties of cylindrical and spherical dust ion–acoustic solitary waves (DIASWs) in an unmagnetized dusty plasma, whose constituents are inertial ions, Boltzmann electrons, and stationary dust particles, are investigated by employing the reductive perturbation method. The modified Korteweg–de Vries equation is derived and its numerical solutions are obtained. It has been found that the properties of the DIASWs in a nonplanar cylindrical or spherical geometry differ from those in a planar one-dimensional geometry.

Dust and Plasma Wave PhenomenaIonosphere and magnetosphere dynamicsSolar and Space Plasma DynamicsPhysicsDusty plasmaIonPlasmaPlanarSpherical geometryBoltzmann equationClassical mechanicsElectronAcoustic wave
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References
Observation of ion-acoustic solitary waves in a dusty plasma
Physics of Plasmas · 2001 · 306 citations
Solitary potentials in dusty plasmas
Physics of Plasmas · 1996 · 324 citations
Laboratory observation of the dust-acoustic wave mode
Physics of Plasmas · 1995 · 1,320 citations
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