Ir al contenido

Documat


Bifurcations Analysis and Monotonicity of the Period Function of the Lakshmanan–Porsezian–Daniel Equation with Kerr Law of Nonlinearity

  • Lin Lu [1] ; Xiaokai He [1] ; Aiyong Chen [1]
    1. [1] Hunan First Normal University
  • Localización: Qualitative theory of dynamical systems, ISSN 1575-5460, Vol. 23, Nº 4, 2024
  • Idioma: inglés
  • DOI: 10.1007/s12346-024-01042-8
  • Enlaces
  • Resumen
    • The bifurcations and monotonicity of the period function of the Lakshmanan– Porsezian–Daniel equation with Kerr law of nonlinearity are discussed. Firstly, by the traveling wave transformations, the Lakshmanan–Porsezian–Daniel equation is reduced to the planar Hamiltonian system whose Hamiltonian function includes a 6- th degree polynomial. Then we give the phase portraits of the Hamiltonian system, and some traveling waves including dark wave solutions, kink and anti-kink solutions and periodic solutions are constructed by using the bifurcation method of dynamical systems. Furthermore, we discuss the monotonicity of the period function of periodic wave solutions by using some Lemmas proposed by Yang and Zeng (Bull Sci Math 133(6):555-557, 2009). Finally, some numerical simulations are presented.

  • Referencias bibliográficas
    • 1. Almusawa, H., Ali, K.K., Wazwaz, A.M., et al.: Protracted study on a real physical phenomenon generated by media inhomogeneities. Results...
    • 2. Abdelwahab, A.M., Mekheimer, K.S., Ali, K.K., et al.: Numerical simulation of electroosmotic force on micropolar pulsatile bloodstream...
    • 3. Osman, M.S., Ali, K.K.: Optical soliton solutions of perturbing time-fractional nonlinear Schrödinger equations. Optik 209, 164589 (2020)
    • 4. Mekheimer, K.S., Abo-Elkhair, R.E., Ali, K.K., et al.: Entropy generation and curvature effect on peristaltic thrusting of (Cu − Al2O3)...
    • 5. Eslami, M., Rezazadeh, H.: The first integral method for Wu-Zhang system with conformable timefractional derivative. Calcolo 53, 475–485...
    • 6. Mirzazadeh, M., Hashemi, M.S., Akbulu, A., et al.: Dynamics of optical solitons in the extended (3+1)- dimensional nonlinear conformable...
    • 7. Al-Amr, M.O., Rezazadeh, H., Ali, K.K., et al.: N1-soliton solution for Schrödinger equation with competing weakly nonlocal and parabolic...
    • 8. Ahmed, K.K., Badra, N.M., Ahmed, H.M., et al.: Investigation of solitons in magneto-optic waveguides with Kudryashov’s law nonlinear refractive...
    • 9. Rezazadeh, H.: New solitons solutions of the complex Ginzburg–Landau equation with Kerr law nonlinearity. Optik 167, 218–227 (2018)
    • 10. Hosseini, K., Mirzazadeh, M., Gmez-Aguilar, J.F.: Soliton solutions of the Sasa–Satsuma equation in the monomode optical fibers including...
    • 11. Zayed, E.M.E., Arnous, A.H., Secer, A., et al.: Highly dispersive optical solitons in fiber Bragg gratings for stochastic Lakshmanan–Porsezian–Daniel...
    • 12. Annamalai, M., Veerakumar, N., Narasimhan, S.L., et al.: Algorithm for dark solitons with Radhakrishnan–Kundu–Lakshmanan model in an optical...
    • 13. Lakshmanan, M., Porsezian, K., Daniel, M.: Effect of discreteness on the continuum limit of the Heisenberg spin chain. Phys. Lett. A 133(9),...
    • 14. Porsezian, K., Daniel, M., Lakshmanan, M.: On the integrability aspects of the one-dimensional classical continuum isotropic biquadratic...
    • 15. Kudryashov, N.A.: The Lakshmanan–Porsezian–Daniel model with arbitrary refractive index and its solution. Optik 241, 167043 (2021)
    • 16. Hussein, H.H., Ahmed, H.M., Alexan, W.: Analytical soliton solutions for cubic-quartic perturbations of the Lakshmanan–Porsezian–Daniel...
    • 17. Wu, X.H., Gao, Y.T., Yu, X., et al.: Modified generalized Darboux transformation and solitons for a Lakshmanan–Porsezian–Daniel equation....
    • 18. Wu, X.H., Gao, Y.T., Yu, X., et al.: Binary Darboux transformation, solitons, periodic waves and modulation instability for a nonlocal...
    • 19. Biswas, A., Yildirim, Y., Yasar, E., et al.: Optical solitons for Lakshmanan–Porsezian–Daniel model by modified simple equation method....
    • 20. Ali, M.R., Khattab, M.A., Mabrouk, S.M.: Optical soliton solutions for the integrable Lakshmanan– Porsezian–Daniel equation via the inverse...
    • 21. Zhang, Y., Hao, H.Q., Guo, R.: Periodic solutions and Whitham modulation equations for the Lakshmanan–Porsezian–Daniel equation. Phys....
    • 22. Ma, L.N., Li, S., Wang, T.M., et al.: Multi-soliton solutions and asymptotic analysis for the coupled variable-coefficient Lakshmanan–Porsezian–Daniel...
    • 23. Shi, X., Yang, Y.: Exact solutions and Darboux transformation for the reverse space-time nonlocal Lakshmanan–Porsezian–Daniel equation....
    • 24. Ding, C.C., Zhou, Q., Triki, H., et al.: Interaction dynamics of optical dark bound solitons for a defocusing Lakshmanan–Porsezian–Daniel...
    • 25. Kumar, S., Biswas, A., Zhou, Q., et al.: Straddled optical solitons for cubic-quartic Lakshmanan– Porsezian–Daniel model by Lie symmetry....
    • 26. Tang, L.: Bifurcations and dispersive optical solitons for the cubic-quartic nonlinear Lakshmanan– Porsezian–Daniel equation in polarization-preserving...
    • 27. Akram, S., Ahmad, J., Rehman, S.U.: Stability analysis and dynamical behavior of solitons in nonlinear optics modelled by Lakshmanan–Porsezian–Daniel...
    • 28. Vega-Guzman, J., Alqahtani, R.T., Zhou, Q., et al.: Optical solitons for Lakshmanan–Porsezian–Daniel model with spatio-temporal dispersion...
    • 29. Peng, C., Li, Z., Zhao, H.: New exact solutions to the Lakshmanan–Porsezian–Daniel equation with Kerr law of nonlinearity. Math. Probl....
    • 30. Houwe, A., Abbagari, S., Akinyemi, L., et al.: Modulation instability, bifurcation analysis and solitonic waves in nonlinear optical media...
    • 31. Islam, S.M.R., Khan, K., Akbar, M.A.: Optical soliton solutions, bifurcation, and stability analysis of the Chen-Lee-Liu model. Results...
    • 32. Geyer, A., Martins, R.H., Natali, F., et al.: Stability of smooth periodic travelling waves in the CamassaHolm equation. Stud. Appl. Math....
    • 33. Johnson,M.A., Noble, P., Rodrigues, L.M., et al.: Behavior of periodic solutions of viscous conservation laws under localized and nonlocalized...
    • 34. Hakkaev, S., Stanislavova, M., Stefanov, A.: Spectral stability for classical periodic waves of the Ostrovsky and short pulse models....
    • 35. Pava, J.A., Bona, J.L., Scialom, M.: Stability of cnoidal waves. Adv. Differ. Equ. 11(12), 1321–1374 (2006)
    • 36. Wang, Q., Huang, W.: Limit periodic travelling wave solution of a model for biological invasions. Appl. Math. Lett. 34, 13–16 (2014)
    • 37. Chen, A., Tian, C., Huang, W.: Periodic solutions with equal period for the Friedmann–Robertson– Walker model. Appl. Math. Lett. 77, 101–107...
    • 38. Chen, A., Guo, L., Deng, X.: Existence of solitary waves and periodic waves for a perturbed generalized BBM equation. J. Differ. Equ....
    • 39. Chen, A., Zhang, C., Huang, W.: Monotonicity of limit wave speed of traveling wave solutions for a perturbed generalized KdV equation....
    • 40. Chow, S.N., Sanders, J.A.: On the number of critical points of the period. J. Differ. Equ. 64, 51–66 (1986)
    • 41. Sun, X., Yu, P.: Periodic traveling waves in a generalized BBM equation with weak backward diffusion and dissipation terms. Discrete Contin....
    • 42. Yang, L., Zeng, X.: The period function of potential systems of polynomials with real zeros. Bull. Sci. Math. 133(6), 555–577 (2009)
    • 43. Tang, L., Biswas, A., Yildirim, Y., et al.: Bifurcation analysis and optical solitons for the concatenation model. Phys. Letter A 2023,...
    • 44. Zhu, W., Xia, Y., Zhang, B., et al.: Exact traveling wave solutions and bifurcations of the time-fractional differential equations with...
    • 45. Chow, S.N., Hale, J.K.: Method of bifurcation theory. Springer-Verlag, New York (1981)
    • 46. Li, J.B.: Singular nonlinear traveling wave equations: bifurcation and exact solutions. Science Press, Beijing (2013)

Fundación Dialnet

Mi Documat

Opciones de artículo

Opciones de compartir

Opciones de entorno