2019AIP conference proceedingsRequires access

Effect of collision on dust acoustic and dust ion acoustic wave instabilities in self-gravitating Lorentzian dusty plasma

Samit Paul, Raicharan Denra, Susmita Sarkar

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Abstract

A theoretical analysis of the dust acoustic and dust ion acoustic wave instabilities in self-gravitating collisional dusty plasma have been presented considering the presence of suprathermal charge particles. The suprathermal charge particles can reduce the dispersion of the dust-acoustic and dust ion acoustic waves, and broaden the wave- number range as well as increase the growth rate.

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A theoretical analysis of the dust acoustic and dust ion acoustic wave instabilities in self-gravitating collisional dusty plasma have been presented considering the presence of suprathermal charge particles. The suprathermal charge particles can reduce the dispersion of the dust-acoustic and dust ion acoustic waves, and broaden the wave- number range as well as increase the growth rate.

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Available abstract

A theoretical analysis of the dust acoustic and dust ion acoustic wave instabilities in self-gravitating collisional dusty plasma have been presented considering the presence of suprathermal charge particles. The suprathermal charge particles can reduce the dispersion of the dust-acoustic and dust ion acoustic waves, and broaden the wave- number range as well as increase the growth rate.

Key concepts: Dusty plasma, Physics, Ion acoustic wave, Acoustic wave, Ion, Plasma, Dispersion (optics), Range (aeronautics)

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Effect of collision on dust acoustic and dust ion acoustic wave instabilities in self-gravitating Lorentzian dusty plasma — Research Paper | ScholarLens