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Small Amplitude Nonlinear Dust Acoustic Wave Propagation in Saturn's F, G and E Rings
Authors:Samiran Ghosh  Tushar K Chaudhuri  S Sarkar  Manoranjan Khan  MR Gupta
Institution:(1) Centre for Plasma Studies, Faculty of Science, Jadavpur University, Calcutta –, 700 032, India
Abstract:Nonlinear properties of small amplitude dust acoustic waves, incorporatingboth the ion inertial effect and dust drift effect have been studied.The effect of dust charge variation is also incorporated. It is seen thatdue to the dust charge variation, a Korteweg-de Vries (KdV) equationwith positive or negative damping term depending on the wave velocityand the ring parameters governes the nonlinear dust acoustic wave. It isseen that the damping or growth arises due to the assumption that dusthydrodynamical time scale is much smaller than that of the dust chargingscale. This assumption is valid only for planetary rings such as Saturn'sF, G and E rings. Numerical investigations reveal thatall the three rings in F, G and E, dust acoustic solitary wave admits both negative and positive potentials. Instability arises from the available freeenergy of drift motion of dust grains only for the wave with wave velocity lambda 0, the drift velocity of the dust.
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