Application of Exp-function method for 2D cubic-quintic Ginzburg-Landau equation
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Publication:1015808
DOI10.1016/j.amc.2009.01.005zbMath1163.35477OpenAlexW2093344703MaRDI QIDQ1015808
Zhengde Dai, Dong-Long Li, Ye-qiong Shi
Publication date: 30 April 2009
Published in: Applied Mathematics and Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.amc.2009.01.005
KdV equations (Korteweg-de Vries equations) (35Q53) Periodic solutions to PDEs (35B10) Analyticity in context of PDEs (35A20) Solutions to PDEs in closed form (35C05)
Related Items (12)
New exact solutions for the \((2+1)\)-dimensional Sawada-Kotera equation ⋮ Exact traveling wave solutions of the space-time fractional complex Ginzburg-Landau equation and the space-time fractional Phi-4 equation using reliable methods ⋮ Solitons and other solutions for higher-order NLS equation and quantum ZK equation using the extended simplest equation method ⋮ An efficient split-step compact finite difference method for cubic-quintic complex Ginzburg-Landau equations ⋮ Extended auxiliary equation method and its applications for finding the exact solutions for a class of nonlinear Schrödinger-type equations ⋮ The correct traveling wave solutions for the high-order dispersive nonlinear Schrödinger equation ⋮ The traveling wave solutions of the perturbed nonlinear Schrödinger equation and the cubic-quintic Ginzburg Landau equation using the modified (\(G^{\prime}/G\))-expansion method ⋮ Generalization of exp-function and other standard function methods ⋮ Breather type of chirped soliton solutions for the 2D Ginzburg-Landau equation ⋮ Be careful with the Exp-function method - additional remarks ⋮ An investigation of abundant traveling wave solutions of complex nonlinear evolution equations: The perturbed nonlinear Schrodinger equation and the cubic-quintic Ginzburg-Landau equation ⋮ On solving two higher-order nonlinear PDEs describing the propagation of optical pulses in optic fibers using the \((\frac{G^\prime}{G},\frac{1}{G})\)-expansion method
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