New types of soliton solutions for space-time fractional cubic nonlinear Schrodinger equation
Resumen
New definitions for traveling wave transformation and using of new conformable fractional derivative for converting fractional nonlinear evolution equations into the ordinary differential equations are presented in this study. For this aim we consider the time and space fractional derivatives cubic nonlinear Schrodinger equation. Then by using of the efficient and powerful method the exact traveling wave solutions of this equation are obtained. The new definition introduces a promising tool for solving many space-time fractional partial differential equations.
Descargas
Citas
A. Bekir., Application of the (G ’/G)-expansion method for nonlinear evolution equations, Physics Letters A , 372(19):3400-3406 (2008).
Z. Yu-Bin, L. Chao., Application of Modified (G’/G)-expansion method to travelling wave, Theor. Phys. (Beijing, China) 51 pp. 664–670 (2009).
M. Wang, X. Li and J.Zhang., The (G′ G) -Expansion Method and Travelling Wave Soltions of Nonlinear Evolution Equations in Mathematical Physics. Physics Letters A, 372, 417-423 (2008).
Z. Bin., (G’/G) -Expansion Method for Solving Fractional Partial Differential Equations in the Theory of Mathematical Physics. Communications in Theoretical Physics, 58, 623-630 (2012) .
M. Younis and A. Zafar., Exact Solution to Nonlinear Differential Equations of Fractional Order via (G’/ G) -Expansion Method. Applied Mathematics, 5, 1-6 (2014).
S.K. Liu, Z.T.Fu, S.D. Liu and Q. Zhao,Jacobi Elliptic Function Expansion Method and Periodic Wave Solutions of Nonlinear Wave Equations. Physics Letters A, 289, 69-74 (2001) .
E.J. Parkes and B.R. Duffy, An Automated Tanh-Function Method for Finding Solitary Wave Solutions to Non-Linear Evolution Equations. Computer Physics Communications, 98, 288-300 (1996).
K.A. Gepreel., The Homotopy Perturbation Method Applied to the Nonlinear Fractional Kolmogorov Petrovskii Piskunov Equations. Applied Mathematics Letters, 24, 1428-1434 (2011).
M. Younis., The First Integral Method for Time-Space Fractional Differential Equations. Journal of Advanced Physics, 2, 220-223 (2013).
M. Younis and S. Ali, New Applications to Solitary Wave Ansatz. Applied Mathematics, 5, 969-974 (2014).
M. Eslami and A. Neirameh., New solitary and double periodic wave solutions for a generalized sinh-Gordon equation, Eur. Phys. J. Plus 129: 54 (2014).
A. Neirameh., Soliton Solutions of the Time Fractional Generalized Hirota-satsuma Coupled KdV System, Appl. Math. Inf. Sci. 9, No. 4, 1847-1853 (2015).
A. Neirameh., Solitary Wave solutions of the BK equation and ALWW system by using the first integral method, Computational Methods for Differential Equations Vol. 1, No. 2, , pp. 146-156 (2013).
M. Abu Hammad1, R. Khalil, Conformable fractionalheat differential equation, International Journal of Pure and Applied Mathematics, Volume 94 No. 2, 215-221 (2014).
R. Khalil , M. Al Horani , A. Yousef, M. Sababheh, A new definition of fractional derivative, Journal of Computational and Applied Mathematics 264 65–70 (2014).
Derechos de autor 2020 Boletim da Sociedade Paranaense de Matemática

Esta obra está bajo licencia internacional Creative Commons Reconocimiento 4.0.
When the manuscript is accepted for publication, the authors agree automatically to transfer the copyright to the (SPM).
The journal utilize the Creative Common Attribution (CC-BY 4.0).