Optical soliton solutions to the Fokas–Lenells model applying the $${\boldsymbol{\varphi }}^{6}$$-model expansion approach
暂无分享,去创建一个
[1] K. Fatema,et al. The mathematical and wave profile analysis of the Maccari system in nonlinear physical phenomena , 2022, Optical and Quantum Electronics.
[2] A. Seadawy,et al. Dynamical analysis of discrete time equations with a generalized order , 2022, Alexandria Engineering Journal.
[3] M. S. Ullah,et al. Application of the unified method to solve the ion sound and Langmuir waves model , 2022, Heliyon.
[4] M. S. Ullah,et al. Application of the unified method to solve the Biswas-Arshed model , 2022, Results in Physics.
[5] A. Yokuş,et al. Investigation of internal dynamics of soliton with the help of traveling wave soliton solution of Hamilton amplitude equation , 2022, Optical and Quantum Electronics.
[6] D. Baleanu,et al. Inelastic soliton wave solutions with different geometrical structures to fractional order nonlinear evolution equations , 2022, Results in Physics.
[7] Harun-Or-Roshid,et al. Collision phenomena among the solitons, periodic and Jacobi elliptic functions to a (3+1)-dimensional Sharma-Tasso-Olver-like model , 2022, Results in Physics.
[8] M. S. Ullah,et al. Collision phenomena between lump and kink wave solutions to a (3+1)- dimensional Jimbo–Miwa-like model , 2022, Partial Differential Equations in Applied Mathematics.
[9] Jian‐Guo Liu,et al. Nonlinear dynamics for different nonautonomous wave structures solutions of a 3D variable-coefficient generalized shallow water wave equation , 2021, Chinese Journal of Physics.
[10] Onur Alp Ilhan,et al. Characteristics of the new multiple rogue wave solutions to the fractional generalized CBS-BK equation , 2021, Journal of advanced research.
[11] Harun-Or-Roshid,et al. Novel dynamics of wave solutions for Cahn–Allen and diffusive predator–prey models using MSE scheme , 2021 .
[12] A. Wazwaz,et al. A (2+1)-dimensional Kadomtsev–Petviashvili equation with competing dispersion effect: Painlevé analysis, dynamical behavior and invariant solutions , 2021 .
[13] D. Baleanu,et al. Collision phenomena among lump, periodic and soliton solutions to a (2+1)-dimensional Bogoyavlenskii's breaking soliton model , 2021 .
[14] A. Seadawy,et al. Analytical mathematical approaches for the double-chain model of DNA by a novel computational technique , 2021 .
[15] Harun-Or-Roshid,et al. Optical soliton polarization with Lakshmanan–Porsezian–Daniel model by unified approach , 2021, Results in Physics.
[16] Khalida Bibi. The Φ6-model expansion method for solving the Radhakrishnan-Kundu-Lakshmanan equation with Kerr law nonlinearity , 2021 .
[17] Kottakkaran Sooppy Nisar,et al. Novel multiple soliton solutions for some nonlinear PDEs via multiple Exp-function method , 2021 .
[18] Wenxiu Ma,et al. Interaction phenomena among lump, periodic and kink wave solutions to a (3 + 1)-dimensional Sharma-Tasso-Olver-like equation , 2020 .
[19] F. Bouchaala,et al. Propagation of waves with a wide range of frequencies in digital core samples and dynamic strain anomaly detection: carbonate rock as a case study , 2020 .
[20] Choonkill Park,et al. Novel hyperbolic and exponential ansatz methods to the fractional fifth-order Korteweg–de Vries equations , 2020 .
[21] Ghazala Akram,et al. Novel solutions of Biswas-Arshed equation by newly Φ6-model expansion method , 2020 .
[22] M. Osman,et al. New optical solitary wave solutions of Fokas-Lenells equation in optical fiber via Sine-Gordon expansion method , 2020, Alexandria Engineering Journal.
[23] M. S. Ullah,et al. Dynamical structures of multi-soliton solutions to the Bogoyavlenskii’s breaking soliton equations , 2020 .
[24] Y. Bouzidi,et al. Azimuthal investigation of compressional seismic-wave attenuation in a fractured reservoir , 2019, GEOPHYSICS.
[25] Aly R. Seadawy,et al. Propagation of nonlinear complex waves for the coupled nonlinear Schrödinger Equations in two core optical fibers , 2019, Physica A: Statistical Mechanics and its Applications.
[26] M. Belić,et al. Optical solitons pertutabation with Fokas-Lenells equation by exp(−ϕ(ξ))-expansion method , 2019, Optik.
[27] A. Biswas,et al. Optical soliton perturbation with Fokas–Lenells equation by mapping methods , 2019, Optik.
[28] A. Biswas,et al. Optical soliton perturbation with Fokas-Lenells model by Riccati equation approach , 2018, Optik.
[29] M. Belić,et al. Optical soliton solutions to Fokas-lenells equation using some different methods , 2018, Optik.
[30] M. Belić,et al. Optical soliton perturbation of Fokas–Lenells equation with two integration schemes , 2018, Optik.
[31] D. Yao,et al. Analytical study of optical solitons in media with Kerr and parabolic-law nonlinearities , 2013 .
[32] A. S. Fokas,et al. An integrable generalization of the nonlinear Schrödinger equation on the half-line and solitons , 2008, 0812.1335.
[33] A. Seadawy. Stability Analysis of Traveling Wave Solutions for Generalized Coupled Nonlinear KdV Equations , 2016 .