Dust-Charge Variation Effects on Dust ion Acoustic Shock Waves in Four Component Quantum Plasma

The behavior of nonlinear quantum dust ion acoustic (QDIA) shock waves in a collisionless, unmagnetized plasma consisting of inertialess quantum electrons and positrons, classical cold ions and stationary negatively charged dust grains with dust charge variation is investigated using quantum hydrody...

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Veröffentlicht in:JOURNAL OF ADVANCES IN PHYSICS 2017-02, Vol.13 (1), p.4499-4506
Hauptverfasser: Pishbin, Nooshin, Rouhani, M. R., Pajouh, H. Hakimi, Alinejad, N.
Format: Artikel
Sprache:eng
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Zusammenfassung:The behavior of nonlinear quantum dust ion acoustic (QDIA) shock waves in a collisionless, unmagnetized plasma consisting of inertialess quantum electrons and positrons, classical cold ions and stationary negatively charged dust grains with dust charge variation is investigated using quantum hydrodynamic (QHD) equations. The propagation of small amplitude QDIA shock waves is governed by Burgers equation. It is shown that the dust charge variation plays an important role in the formation of such QDIA shock structures. The dependence of the shock wave’s amplitude and thickness on the chemical potential is investigated. The present theory is applicable to analyze the formation of nonlinear structures at quantum scales in dense astrophysical objects.
ISSN:2347-3487
2347-3487
DOI:10.24297/jap.v13i1.4517