Nonlinear Schrodinger Equations with Variable Coefficients: Numerical Integration
Journal of Advances in Mathematics and Computer Science · pp. 56–69 · Published 14 May 2022
10.9734/jamcs/2022/v37i330442Abstract
The nonlinear Schrödinger equation in one-dimensional coordinate is investigated numerically by employing explicit and implicit finite difference methods. It is shown that the explicit method is conditionally stable, and the condition for stability, which is a function of the time step and spatial step size, or several grid points are obtained. It is also shown that the implicit scheme is unconditionally stable and results in a tridiagonal matrix at each time level as a function of the nonlinear term. The effects of dispersion and nonlinearity concerning the time and space steps are also investigated. The validity of our scheme is established by reproducing some existing results on the constant-coefficient nonlinear Schrödinger equation. The schemes are then extended to study the variable coefficient equation, which has a growing interest and applications in many areas of nonlinear science.
Cited by 5
Sunday Gbenro, Temitayo Olaosebikan, Opeyemi Omole · American Journal of Mathematical and Computer Modelling · 2025
Sunday Gbenro, Emmanuel Areo, Adelegan Momoh · American Journal of Applied Mathematics · 2025
Sagarika Mandal, Chakradhar Rajowar, Abhijit Sinha · Pramana · 2023
Rehab M. El-Shiekh, Mahmoud Gaballah · Open Physics · 2025
Showing 4 of 5 known citations — external sources report more than can currently be individually listed.
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