Published January 1, 2014 | Version v1
Journal article Open

Compressive and rarefactive ion acoustic solitons in a magnetized two-ion component plasma

  • 1. Pakistan Inst Engn & Appl Sci, Islamabad 44000, Pakistan

Description

The formation of compressive (hump) and rarefactive (dip) ion acoustic solitons is studied in magnetized O+- H+- e and O+- H-- e plasmas. The hydrodynamics equations are described for cold heavy (oxygen) ions, warm light (hydrogen) ions and isothermal Boltzmann distributed electrons along with Poisson equations in the presence of a magnetic field. The reductive perturbation method is used to derive the nonlinear Zakharov- Kuznetsov (ZK) equation for an ion acoustic wave in magnetized two- ion component plasma. It is found that two modes of ion acoustic waves with fast and slow speeds can propagate in the linear limit in such a plasma. It is noticed that, in the case of positively charged light hydrogen ions O+- H+- e plasmas, the slow ion acoustic wave solitons formed both potential hump as well as dip structures, while fast ion acoustic wave solitons give only hump structures. However in the case of negatively charged light hydrogen ions O+- H- - e plasmas, the slow ion acoustic wave solitons formed potential hump structures while fast ion acoustic wave solitons produce dip structures. The variations in the amplitude and width of the nonlinear slow and fast ion acoustic wave structures with density, temperature of light ions and magnetic field intensity are obtained in magnetized two- ion component plasmas. The magnetic field has its effect only on the width of the nonlinear ion acoustic wave structures in two- ion component plasmas.

Files

bib-3371b3ad-616c-4363-ac0d-432d9d5f0a02.txt

Files (168 Bytes)

Name Size Download all
md5:2e33d91c06224a510b12a4dd03472862
168 Bytes Preview Download