Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations

A nonextensive nonthermal magnetized viscoelastic astrofluid, compositionally containing nonthermal electrons and ions together with massive polarized dust micro-spherical grains of variable electric charge, is allowed to endure weakly nonlinear perturbation around its equilibrium. The nonextensivit...

Full description

Bibliographic Details
Main Authors: Papari Das, Pralay Kumar Karmakar
Format: Article
Language:English
Published: AIP Publishing LLC 2018-01-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5011386
id doaj-4b14503b4dad4b6587d653b9fad7d793
record_format Article
spelling doaj-4b14503b4dad4b6587d653b9fad7d7932020-11-25T00:18:45ZengAIP Publishing LLCAIP Advances2158-32262018-01-0181015010015010-1410.1063/1.5011386031801ADVNonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variationsPapari Das0Pralay Kumar Karmakar1Department of Physics, Tezpur University, Napaam, 784028 Tezpur, Assam, IndiaDepartment of Physics, Tezpur University, Napaam, 784028 Tezpur, Assam, IndiaA nonextensive nonthermal magnetized viscoelastic astrofluid, compositionally containing nonthermal electrons and ions together with massive polarized dust micro-spherical grains of variable electric charge, is allowed to endure weakly nonlinear perturbation around its equilibrium. The nonextensivity originating from the large-scale non-local effects is included via the Tsallis thermo-statistical distribution laws describing the lighter species. Assuming the equilibrium as a homogeneous hydrostatic one, the dust polarization effects are incorporated via the conventional homogeneous polarization force law. The perturbed fluid model evolves as a unique conjugate pair of coupled extended Korteweg-de Vries (e-KdV) equations. A constructed numerical tapestry shows the collective excitations of a new pair of distinct classes of nonlinear mode structures in new parametric space. The first family indicates periodic electrostatic compressive eigenmodes in the form of soliton-chains. Likewise, the second one reveals gravitational rarefactive solitary patterns. Their microphysical multi-parametric dependencies of the eigen-patterns are illustratively analyzed and bolstered. The paper ends up with some promising implications and applications in the astro-cosmo-plasmic context of wave-induced accretive triggering processes responsible for gravitationally bounded (gravito-condensed) astro-structure formation, such as stellesimals, planetsimals, etc.http://dx.doi.org/10.1063/1.5011386
collection DOAJ
language English
format Article
sources DOAJ
author Papari Das
Pralay Kumar Karmakar
spellingShingle Papari Das
Pralay Kumar Karmakar
Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
AIP Advances
author_facet Papari Das
Pralay Kumar Karmakar
author_sort Papari Das
title Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
title_short Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
title_full Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
title_fullStr Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
title_full_unstemmed Nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
title_sort nonlinear waves in viscoelastic magnetized complex astroplasmas with polarized dust-charge variations
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2018-01-01
description A nonextensive nonthermal magnetized viscoelastic astrofluid, compositionally containing nonthermal electrons and ions together with massive polarized dust micro-spherical grains of variable electric charge, is allowed to endure weakly nonlinear perturbation around its equilibrium. The nonextensivity originating from the large-scale non-local effects is included via the Tsallis thermo-statistical distribution laws describing the lighter species. Assuming the equilibrium as a homogeneous hydrostatic one, the dust polarization effects are incorporated via the conventional homogeneous polarization force law. The perturbed fluid model evolves as a unique conjugate pair of coupled extended Korteweg-de Vries (e-KdV) equations. A constructed numerical tapestry shows the collective excitations of a new pair of distinct classes of nonlinear mode structures in new parametric space. The first family indicates periodic electrostatic compressive eigenmodes in the form of soliton-chains. Likewise, the second one reveals gravitational rarefactive solitary patterns. Their microphysical multi-parametric dependencies of the eigen-patterns are illustratively analyzed and bolstered. The paper ends up with some promising implications and applications in the astro-cosmo-plasmic context of wave-induced accretive triggering processes responsible for gravitationally bounded (gravito-condensed) astro-structure formation, such as stellesimals, planetsimals, etc.
url http://dx.doi.org/10.1063/1.5011386
work_keys_str_mv AT paparidas nonlinearwavesinviscoelasticmagnetizedcomplexastroplasmaswithpolarizeddustchargevariations
AT pralaykumarkarmakar nonlinearwavesinviscoelasticmagnetizedcomplexastroplasmaswithpolarizeddustchargevariations
_version_ 1725374651106852864