Periodic wave solutions and stability analysis for the (3+1)-D potential-YTSF equation arising in fluid mechanics
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Jalil Manafian | Onur Alp Ilhan | Hajar Farhan Ismael | Sizar Abid Mohammed | Saadat Mazanova | J. Manafian | S. Mohammed | O. Ilhan | H. Ismael | Saadat Mazanova
[1] H. Fang,et al. General high-order localized waves to the Bogoyavlenskii–Kadomtsev–Petviashvili equation , 2020 .
[2] H. Bulut,et al. Jacobi elliptic function solutions of the double dispersive equation in the Murnaghan's rod , 2019, The European Physical Journal Plus.
[3] H. M. Baskonus,et al. Complex surfaces to the fractional (2 + 1)-dimensional Boussinesq dynamical model with the local M-derivative , 2019, The European Physical Journal Plus.
[4] Yong Chen,et al. Lump Solutions and Interaction Phenomenon for (2+1)-Dimensional Sawada-Kotera Equation , 2017 .
[5] Y. H. Elbashar,et al. Optical properties of high density barium borate glass for gamma ray shielding applications , 2015 .
[6] Haci Mehmet Baskonus,et al. Complex Soliton Solutions to the Gilson-Pickering Model , 2019, Axioms.
[7] Wen-Xiu Ma,et al. Lump-type solutions to nonlinear differential equations derived from generalized bilinear equations , 2016 .
[8] Chuanjian Wang,et al. Spatiotemporal deformation of lump solution to (2+1)-dimensional KdV equation , 2016 .
[9] Hasan Bulut,et al. Instability modulation for the (2+1)-dimension paraxial wave equation and its new optical soliton solutions in Kerr media , 2020, Physica Scripta.
[10] J. Manafian,et al. Applications of the ETEM for obtaining optical soliton solutions for the Lakshmanan-Porsezian-Daniel model , 2017 .
[11] J. Manafian,et al. Abundant soliton solutions for the coupled Schrödinger-Boussinesq system via an analytical method , 2016 .
[12] D. G. Prakasha,et al. A powerful approach for fractional Drinfeld–Sokolov–Wilson equation with Mittag-Leffler law , 2019 .
[13] J. Manafian,et al. Wave solutions for variants of the KdV–Burger and the K(n,n)–Burger equations by the generalized G′/G‐expansion method , 2017 .
[14] Huanhe Dong,et al. Rational solutions and lump solutions to the generalized (3+1)-dimensional Shallow Water-like equation , 2017, Comput. Math. Appl..
[15] H. M. Baskonus,et al. Exponential prototype structures for (2+1)-dimensional Boiti-Leon-Pempinelli systems in mathematical physics , 2016 .
[16] Zhenyun Qin,et al. Lump solutions to dimensionally reduced $$\varvec{p}$$p-gKP and $$\varvec{p}$$p-gBKP equations , 2016 .
[17] Haci Mehmet Baskonus,et al. Regarding the group preserving scheme and method of line to the numerical simulations of Klein–Gordon model , 2019 .
[18] H. M. Baskonus,et al. Complex acoustic gravity wave behaviors to some mathematical models arising in fluid dynamics and nonlinear dispersive media , 2017 .
[19] A. Ramani,et al. INVERSE SCATTERING, ORDINARY DIFFERENTIAL EQUATIONS OF PAINLEVÉ‐TYPE, AND HIROTA'S BILINEAR FORMALISM * , 1981 .
[20] Zhengde Dai,et al. Interaction Between Kink Solitary Wave and Rogue Wave for (2+1)-Dimensional Burgers Equation , 2016 .
[21] Ali J. Chamkha,et al. Heat and mass transfer investigation of MHD Eyring–Powell flow in a stretching channel with chemical reactions , 2020 .
[22] H. An,et al. Non-traveling lump solutions and mixed lump–kink solutions to (2+1)-dimensional variable-coefficient Caudrey–Dodd–Gibbon–Kotera–Sawada equation , 2019, Modern Physics Letters B.
[23] Runfa Zhang,et al. Abundant Lump Solutions and Interaction Phenomena to the Kadomtsev-Petviashvili-Benjamin-Bona-Mahony Equation , 2018 .
[24] J. Satsuma,et al. Two‐dimensional lumps in nonlinear dispersive systems , 1979 .
[25] J. F. Gómez‐Aguilar,et al. New singular soliton solutions to the longitudinal wave equation in a magneto-electro-elastic circular rod with M-derivative , 2019, Modern Physics Letters B.
[26] Mohammad Shahriari,et al. Lump wave solutions and the interaction phenomenon for a variable-coefficient Kadomtsev-Petviashvili equation , 2019, Comput. Math. Appl..
[27] M. Dehghan,et al. The Solution of the Variable Coefficients Fourth-Order Parabolic Partial Differential Equations by the Homotopy Perturbation Method , 2009 .
[28] Jingyuan Yang,et al. Lump solutions to the BKP equation by symbolic computation , 2016 .
[29] J. Manafian,et al. Lump solution and its interaction to (3+1)-D potential-YTSF equation , 2018 .
[30] Behnam Mohammadi-Ivatloo,et al. Lump-type solutions and interaction phenomenon to the (2+1)-dimensional Breaking Soliton equation , 2019, Appl. Math. Comput..
[31] Ming Song,et al. Application of the (G'/G)-expansion method to (3 +1)-dimensional nonlinear evolution equations , 2010, Comput. Math. Appl..
[32] Wenxiu Ma,et al. Lump solutions to the Kadomtsev–Petviashvili equation , 2015 .
[33] H. M. Baskonus,et al. Solitons in conformable time-fractional Wu–Zhang system arising in coastal design , 2019, Pramana.
[34] Zhengde Dai,et al. New periodic soliton solutions for the (3 + 1)-dimensional potential-YTSF equation , 2009 .
[35] Xianguo Geng,et al. N-soliton solution and its Wronskian form of a (3+1)-dimensional nonlinear evolution equation , 2007 .
[36] M. Goyal,et al. An efficient technique for a time fractional model of lassa hemorrhagic fever spreading in pregnant women , 2019, The European Physical Journal Plus.
[37] T. Sulaiman,et al. Bright, dark optical and other solitons to the generalized higher-order NLSE in optical fibers , 2018, Optical and Quantum Electronics.
[38] Zhenya Yan,et al. New families of nontravelling wave solutions to a new (3+1)-dimensional potential-YTSF equation , 2003 .
[39] B. Bhattacherjee,et al. Current status of MSSM Higgs sector with LHC 13 TeV data , 2016, The European Physical Journal Plus.
[40] T. Chaolu,et al. The study of lump solution and interaction phenomenon to $$\varvec{(2+1)}$$(2+1)-dimensional generalized fifth-order KdV equation , 2018 .
[41] Jalil Manafian,et al. On the complex structures of the Biswas-Milovic equation for power, parabolic and dual parabolic law nonlinearities , 2015 .
[42] Hongqing Zhang,et al. A new variable coefficient Korteweg-de Vries equation-based sub-equation method and its application to the (3+1)-dimensional potential-YTSF equation , 2007, Appl. Math. Comput..
[43] J. Manafian,et al. Lump-type solutions and interaction phenomenon to the bidirectional Sawada–Kotera equation , 2019, Pramana.
[44] S. Bilige,et al. Lump solutions of a ($$2+1$$2+1)-dimensional bSK equation , 2017 .
[45] Zhengde Dai,et al. New kink multi-soliton solutions for the (3+1)-dimensional potential-Yu-Toda-Sasa-Fukuyama equation , 2014, Appl. Math. Comput..
[46] Hasan Bulut,et al. Complex and Real Optical Soliton Properties of the Paraxial Non-linear Schrödinger Equation in Kerr Media With M-Fractional , 2019, Front. Phys..
[47] Qing Guan,et al. Lump solitons and the interaction phenomena of them for two classes of nonlinear evolution equations , 2016, Comput. Math. Appl..
[48] M. Teli. General electrodynamics of non-abelian vector bosons of SU(2) , 2019, Pramana.
[49] E. Ozturk,et al. Nonlinear intersubband absorption and refractive index change in n-type δ-doped GaAs for different donor distributions , 2015 .
[50] Heng-Nong Xuan,et al. Non-travelling wave solutions to a (3+1)-dimensional potential-YTSF equation and a simplified model for reacting mixtures , 2007 .
[51] M. Dehghan,et al. Application of the Exp‐function method for solving a partial differential equation arising in biology and population genetics , 2011 .
[52] J. Manafian. Optical soliton solutions for Schrödinger type nonlinear evolution equations by the tan(Φ(ξ)/2)-expansion method , 2016 .
[53] Zhenyun Qin,et al. Lump solutions to dimensionally reduced p-gKP and p-gBKP equations , 2015 .
[54] On the Solvability of a Mixed Problem for a High-Order Partial Differential Equation with Fractional Derivatives with Respect to Time, with Laplace Operators with Spatial Variables and Nonlocal Boundary Conditions in Sobolev Classes , 2019, Mathematics.
[55] Zhengde Dai,et al. Periodic kink-wave and kinky periodic-wave solutions for the Jimbo Miwa equation , 2008 .
[56] Onur Alp Ilhan,et al. Periodic type and periodic cross-kink wave solutions to the (2 + 1)-dimensional breaking soliton equation arising in fluid dynamics , 2019, Modern Physics Letters B.
[57] Bin He,et al. Bilinear form and new interaction solutions for the sixth-order Ramani equation , 2019, Appl. Math. Lett..
[58] Badong Chen,et al. Time series prediction using kernel adaptive filter with least mean absolute third loss function , 2017 .
[59] Wen-Xiu Ma,et al. Solving the (3 + 1)-dimensional generalized KP and BKP equations by the multiple exp-function algorithm , 2012, Appl. Math. Comput..
[60] J. Manafian,et al. Abundant soliton solutions for the Kundu–Eckhaus equation via tan(ϕ(ξ))-expansion method , 2016 .
[61] Jalil Manafian,et al. Novel solitary wave solutions for the (3+1)-dimensional extended Jimbo-Miwa equations , 2018, Comput. Math. Appl..
[62] J. Manafian,et al. Dispersive dark optical soliton with Tzitzéica type nonlinear evolution equations arising in nonlinear optics , 2016 .