Faculty of Physics
M.V.Lomonosov Moscow State University
Menu
Regular Article

Nonlinear ion acoustic solitary waves in electron-positron-ion inhomogeneous Plasma

Ahmed El-Sayed Mowafy

Moscow University Physics Bulletin 2016. 71. N 3. P. 229

  • Article
Annotation

A theoretical investigation has been made for studying the propagation of ion-acoustic waves (IAWs) in a weakly inhomogeneous, collisionless, unmagnetized, three-component plasmas, whose constituents are inertial ions, nonthermal electrons, and Boltzmannian positrons. Employing reductive perturbation method (RPM), the variable coefficients Korteweg–de Varies equation (KdV) is derived. At the critical ion density, the KdV equation is not suitable for describing the system. Thus, a new set of stretched coordinates is considered to derive the modified variable coefficients KdV equation. Above (below) this critical point the system supports compressive (rarefactive) solitons. The effect of plasma parameters on the soliton profile has been considered. It has been shown that the width and the amplitude of the soliton affected by wave propagation speed, ratio of positron-to-electron density, and nonthermal parameter.

Received: 2015 December 14
Approved: 2016 March 23
PACS:
52.35.Mw Nonlinear phenomena: waves, wave propagation, and other interactions
Authors
Ahmed El-Sayed Mowafy
Theoretical Physics Group, Physics Department, Faculty of Science, Hail University, Saudi Arabia
Issue 3, 2016

Moscow University Physics Bulletin

Science News of the Faculty of Physics, Lomonosov Moscow State University

This new information publication, which is intended to convey to the staff, students and graduate students, faculty colleagues and partners of the main achievements of scientists and scientific information on the events in the life of university physicists.