A study of fractional complex Ginzburg–Landau model with three kinds of fractional operators
暂无分享,去创建一个
[1] H. Rezazadeh,et al. Optical solitons of nonlinear complex Ginzburg–Landau equation via two modified expansion schemes , 2021, Optical and Quantum Electronics.
[2] Wenjun Liu,et al. Soliton fusion and fission for the high-order coupled nonlinear Schrödinger system in fiber lasers , 2021, Chinese Physics B.
[3] Wenjun Liu,et al. The dynamic characteristics of pure-quartic solitons and soliton molecules , 2021, Applied Mathematical Modelling.
[4] Wenjun Liu,et al. Soliton interaction control through dispersion and nonlinear effects for the fifth-order nonlinear Schrödinger equation , 2021, Nonlinear Dynamics.
[5] H. M. Baskonus,et al. On pulse propagation of soliton wave solutions related to the perturbed Chen–Lee–Liu equation in an optical fiber , 2021, Optical and Quantum Electronics.
[6] Wenjun Liu,et al. Stable transmission characteristics of double-hump solitons for the coupled Manakov equations in fiber lasers , 2021, Nonlinear Dynamics.
[7] M. A. Abdou,et al. New optical solitons for complex Ginzburg–Landau equation with beta derivatives via two integration algorithms , 2021, Indian Journal of Physics.
[8] Serbay Duran,et al. Extractions of travelling wave solutions of (2 + 1)-dimensional Boiti–Leon–Pempinelli system via (Gʹ/G, 1/G)-expansion method , 2021, Optical and Quantum Electronics.
[9] A. Kader,et al. Kink wave, dark and bright soliton solutions for complex Ginzburg–Landau equation using Lie symmetry method , 2021 .
[10] A. Hendi,et al. New periodic solutions for Ginzburg-Landau in three different derivatives via extended Jacobian elliptic function method , 2021 .
[11] Wenjun Liu,et al. Bright soliton solutions of the (2+1)-dimensional generalized coupled nonlinear Schrödinger equation with the four-wave mixing term , 2021, Nonlinear Dynamics.
[12] H. Durur,et al. (G'/G,1/G)-expansion method for analytical solutions of Jimbo-Miwa equation , 2021, Cumhuriyet Science Journal.
[13] Wenjun Liu,et al. Effects of dispersion terms on optical soliton propagation in a lossy fiber system , 2021, Nonlinear Dynamics.
[14] W. Liu 刘,et al. Soliton Rectangular Pulses and Bound States in a Dissipative System Modeled by the Variable-Coefficients Complex Cubic-Quintic Ginzburg–Landau Equation , 2021, Chinese Physics Letters.
[15] S. Elagan,et al. New optical soliton solutions via generalized Kudryashov’s scheme for Ginzburg–Landau equation in fractal order , 2021 .
[16] M. K. Elboree. Optical solitons for complex Ginzburg–Landau model with Kerr, quadratic–cubic and parabolic law nonlinearities in nonlinear optics by the $$\hbox {exp}(-\Phi (\zeta ))$$ expansion method , 2020 .
[17] J. F. Gómez‐Aguilar,et al. Biswas–Arshed equation with the beta time derivative: Optical solitons and other solutions , 2020 .
[18] Ya-qiong Wen,et al. Exact solution of perturbed nonlinear Schrödinger equation using ($$G^\prime /$$G′/G, 1/G)-expansion method , 2019, Pramana.
[19] Hadi Rezazadeh,et al. New solitons solutions of the complex Ginzburg-Landau equation with Kerr law nonlinearity , 2018, Optik.
[20] Anjan Biswas,et al. Optical solitons with complex Ginzburg-Landau equation by modified simple equation method , 2017 .
[21] Thabet Abdeljawad,et al. On conformable fractional calculus , 2015, J. Comput. Appl. Math..
[22] E. Zayed,et al. The -Expansion Method and Its Applications for Solving Two Higher Order Nonlinear Evolution Equations , 2014 .
[23] N. University,et al. Some Applications of Fractional Equations , 2002, nlin/0212024.
[24] C. D. Levermore,et al. Weak and strong solutions of the complex Ginzburg-Landau equation , 1994 .
[25] Darryl D. Holm,et al. Low-dimensional behaviour in the complex Ginzburg-Landau equation , 1988 .