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Research Article Open access CC BY 4.0

Super-sech Soliton Dynamics in Optical Metamaterials with Generally Parabolic Law of Nonlinearity Using Lagrangian Variational Method

Amour Ayela, Gaston Edah, Camille Elloh, Ga´etan Djossou

Physical Science International Journal · pp. 1–9 · Published 22 Mar 2019

10.9734/psij/2019/v21i330109

Abstract

Aims/ Objectives: This paper studies the impact of the generally parabolic law of nonlinearity on the evolution of the energy of super-sech soliton dynamics. Study Design: generally parabolic law of nonlinearity terms study. Place and Duration of Study: Department of Physics, Faculty of Sciences and Technology(FAST), University of Abomey Calavi, B´ enin. between Febuary 2018 and January 2019. Methodology: Variational approach, namely, the Lagrangian Variational Method (LVM) is presented. The different results are obtained using standard fourth order Runge-Kutta method for integration of the system of ordinary differential equation systems. Results: Dynamics of the different parameters (amplitude, center position, pulse width, chirp, frequency and phase) has been presented with respect to propagating distance. Conclusion: This study reveals that the generally parabolic law of nonlinearity terms don’t affect the energy of the system but influence the pulse phase.

Lagrangian approach generaly parabolic law super-sech soliton metamaterial.

Cited by 5

Gausson parameter dynamics in ENZ-material based waveguides using moment method

Camille Elloh, Gaston Edah, Amour Ayela · Optik · 2021

Modeling interaction of ultrashort pulses with ENZ materials

Camille Elloh, Gaston Edah, Amour Ayela · Chinese Journal of Physics · 2021

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