Nonlinear shock structure in a weakly ionised magnetoplasma

The formation of a neutral induced weak nonlinear shock structure in a weakly ionised magnetoplasma has been analytically investigated. Using the reductive perturbation method, basic dynamical equations of a three-component (electron, ion and neutral) plasma have been reduced to a well-known Bur...

Full description

Bibliographic Details
Main Authors: C. B. Dwivedi, S. C. Tripathy
Format: Article
Language:English
Published: Copernicus Publications 1994-12-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/12/1139/1994/angeo-12-1139-1994.pdf
id doaj-3ebec9dd3c064d3797320eb3de8e1f46
record_format Article
spelling doaj-3ebec9dd3c064d3797320eb3de8e1f462020-11-24T21:57:36ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05761994-12-01121139114310.1007/s00585-994-1139-4Nonlinear shock structure in a weakly ionised magnetoplasmaC. B. DwivediS. C. TripathyThe formation of a neutral induced weak nonlinear shock structure in a weakly ionised magnetoplasma has been analytically investigated. Using the reductive perturbation method, basic dynamical equations of a three-component (electron, ion and neutral) plasma have been reduced to a well-known Burger equation which can support a weak shock solution. Its stationary and initial value solutions have been derived to describe the characteristics of the weak shock profile. Asymptotic behaviour of the Burger solution results in a saw-tooth structure which has a practical implication to predict the nonlinear steepened structure of the nighttime irregularity in the lower portion of the Earth's ionosphere. Accordingly, it is suggested that the observation of saw-tooth shape of nighttime irregularity at 92 km could be attributed to the nonlinear saturation of the NILF mode instability as proposed by Dwivedi and Das in 1992. However, exact experimental verification of this suggestion requires more data on nighttime irregularity in the mesosphere and lower thermosphere (80-95 km) for a wide range of scale sizes extending up to about 1 km and above.https://www.ann-geophys.net/12/1139/1994/angeo-12-1139-1994.pdf
collection DOAJ
language English
format Article
sources DOAJ
author C. B. Dwivedi
S. C. Tripathy
spellingShingle C. B. Dwivedi
S. C. Tripathy
Nonlinear shock structure in a weakly ionised magnetoplasma
Annales Geophysicae
author_facet C. B. Dwivedi
S. C. Tripathy
author_sort C. B. Dwivedi
title Nonlinear shock structure in a weakly ionised magnetoplasma
title_short Nonlinear shock structure in a weakly ionised magnetoplasma
title_full Nonlinear shock structure in a weakly ionised magnetoplasma
title_fullStr Nonlinear shock structure in a weakly ionised magnetoplasma
title_full_unstemmed Nonlinear shock structure in a weakly ionised magnetoplasma
title_sort nonlinear shock structure in a weakly ionised magnetoplasma
publisher Copernicus Publications
series Annales Geophysicae
issn 0992-7689
1432-0576
publishDate 1994-12-01
description The formation of a neutral induced weak nonlinear shock structure in a weakly ionised magnetoplasma has been analytically investigated. Using the reductive perturbation method, basic dynamical equations of a three-component (electron, ion and neutral) plasma have been reduced to a well-known Burger equation which can support a weak shock solution. Its stationary and initial value solutions have been derived to describe the characteristics of the weak shock profile. Asymptotic behaviour of the Burger solution results in a saw-tooth structure which has a practical implication to predict the nonlinear steepened structure of the nighttime irregularity in the lower portion of the Earth's ionosphere. Accordingly, it is suggested that the observation of saw-tooth shape of nighttime irregularity at 92 km could be attributed to the nonlinear saturation of the NILF mode instability as proposed by Dwivedi and Das in 1992. However, exact experimental verification of this suggestion requires more data on nighttime irregularity in the mesosphere and lower thermosphere (80-95 km) for a wide range of scale sizes extending up to about 1 km and above.
url https://www.ann-geophys.net/12/1139/1994/angeo-12-1139-1994.pdf
work_keys_str_mv AT cbdwivedi nonlinearshockstructureinaweaklyionisedmagnetoplasma
AT sctripathy nonlinearshockstructureinaweaklyionisedmagnetoplasma
_version_ 1725854630105055232