Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas

This paper explores linear waves’ instability in nonuniform complex plasmas with dust size distribution and non-adiabatic dust charge fluctuation. For this purpose, the dispersion relation is obtained with the aid of linearizing the hydrodynamic equations governing the properties of linear waves. Th...

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Main Authors: Jun Fu, Liping Zhang, Meilin Zhang
Format: Article
Language:English
Published: AIP Publishing LLC 2024-03-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/5.0194497
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author Jun Fu
Liping Zhang
Meilin Zhang
author_facet Jun Fu
Liping Zhang
Meilin Zhang
author_sort Jun Fu
collection DOAJ
description This paper explores linear waves’ instability in nonuniform complex plasmas with dust size distribution and non-adiabatic dust charge fluctuation. For this purpose, the dispersion relation is obtained with the aid of linearizing the hydrodynamic equations governing the properties of linear waves. The contribution of physical parameters such as inhomogeneity, nonadiabatic dust charge fluctuation, and dust size distribution to the features of dust acoustic waves is examined at great length. The numerical results show that the present research results are very important in the phenomenon of space astrophysical and experimental plasmas.
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spelling doaj.art-e231e85fb63e4a4ea69c8c2cd37149262024-04-02T20:29:17ZengAIP Publishing LLCAIP Advances2158-32262024-03-01143035004035004-710.1063/5.0194497Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmasJun Fu0Liping Zhang1Meilin Zhang2Meishan Boya Advanced Materials Co., Ltd., Meishan 620000, ChinaSchool of Sciences, Lanzhou University of Technology, Lanzhou 730050, ChinaSchool of Sciences, Lanzhou University of Technology, Lanzhou 730050, ChinaThis paper explores linear waves’ instability in nonuniform complex plasmas with dust size distribution and non-adiabatic dust charge fluctuation. For this purpose, the dispersion relation is obtained with the aid of linearizing the hydrodynamic equations governing the properties of linear waves. The contribution of physical parameters such as inhomogeneity, nonadiabatic dust charge fluctuation, and dust size distribution to the features of dust acoustic waves is examined at great length. The numerical results show that the present research results are very important in the phenomenon of space astrophysical and experimental plasmas.http://dx.doi.org/10.1063/5.0194497
spellingShingle Jun Fu
Liping Zhang
Meilin Zhang
Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
AIP Advances
title Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
title_full Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
title_fullStr Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
title_full_unstemmed Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
title_short Effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
title_sort effect of dust size distribution and nonadiabatic charge variation on dispersion relation for linear waves in inhomogeneous complex plasmas
url http://dx.doi.org/10.1063/5.0194497
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AT lipingzhang effectofdustsizedistributionandnonadiabaticchargevariationondispersionrelationforlinearwavesininhomogeneouscomplexplasmas
AT meilinzhang effectofdustsizedistributionandnonadiabaticchargevariationondispersionrelationforlinearwavesininhomogeneouscomplexplasmas