SearcharxivSearch

arXiv subjects

Yasin Hasanoglu

Publications and source records attributed to Yasin Hasanoglu.

2 recordsLinked to original sources

A Modified Davey-Stewartson System of Nonlinear Dust Acoustic Waves in (3+1)-Dimensions: Lie Symmetries and Exact Solutions

This article is devoted to the analysis of a modified Davey-Stewartson system in three space dimensions, which was obtained in plasma physics for propagation of nonlinear dust acoustic waves. The system differs from the Davey-Stewartson systems available in the literature by an additional term which can be viewed as a constant complex potential. We show that, under a certain condition on the parameters of the system, this term can be removed by a transformation. This restriction also separates the different realizations of Lie symmetry algebra of the modified Davey-Stewartson system, which is identified as semi-direct sum of a finite-dimensional algebra with a Kac-Moody algebra. Having shed light on the group-theoretical properties of the system, we present several results on the exact solutions of generalized traveling wave type, some of which are line solitons and kink solitons on planes in space. We finalize by analysing the stability of traveling wave solutions.

nlin.SI

On the Rosenau equation: Lie symmetries, periodic solutions and solitary wave dynamics

In this paper, we first consider the Rosenau equation with the quadratic nonlinearity and identify its Lie symmetry algebra. We obtain reductions of the equation to ODEs, and find periodic analytical solutions in terms of elliptic functions. Then, considering a general power-type nonlinearity, we prove the non-existence of solitary waves for some parameters using Pohozaev type identities. The Fourier pseudo-spectral method is proposed for the Rosenau equation with this single power type nonlinearity. In order to investigate the solitary wave dynamics, we generate the solitary wave profile as an initial condition by using the Petviashvili's method. Then the evolution of the single solitary wave and overtaking collision of solitary waves are investigated by various numerical experiments.

math.AP