Abstract Bifurcation analysis of ion-acoustic wave (IAWs) solutions of the nonlinear Schrödinger equation (NLSE) is explored for the first time in an electron-ion (e-i) magnetized solar wind plasma. The existence of ion-acoustic (IA) periodic, superperiodic, kink, antikink, compressive and rarefactive solitary wave solutions are revealed. Special values of Solar wind plasma parameters at a normalized distance from the Sun are considered for numerical simulation. The IA wave solutions are derived analytically. These solutions are analyzed numerically considering the influence of parameters, namely, wave number (k), velocity (V) of traveling wave and nonextensive parameter (q). Computational simulation reveals that only IA periodic wave grows in amplitude as waves moves from the Sun.


    Access

    Check access

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    Bifurcation analysis of ion-acoustic waves for Schrödinger equation in nonextensive Solar wind plasma


    Contributors:

    Published in:

    Publication date :

    2020-07-23


    Size :

    11 pages




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English




    Multidimensional fractional Schrodinger equation

    Rodrigues, M.M. / Vieira, N. | British Library Conference Proceedings | 2012




    Hopf bifurcation analysis of the Lev Ginzburg equation

    Bellamy, Michael | Online Contents | 2007


    Electron plasma waves in the solar wind - AMPTE/IRM and UKS observations

    Treumann, R. A. / Bauer, O. H. / Labelle, J. et al. | NTRS | 1986