An efficient computational scheme for solving coupled time-fractional Schrödinger equation via cubic B-spline functions

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Abstract

The time fractional Schrödinger equation contributes to our understanding of complex quantum systems, anomalous diffusion processes, and the application of fractional calculus in physics and cubic B-spline is a versatile tool in numerical analysis and computer graphics. This paper introduces a numerical method for solving the time fractional Schrödinger equation using B-spline functions and the Atangana-Baleanu fractional derivative. The proposed method employs a finite difference scheme to discretize the fractional derivative in time, while a θ-weighted scheme is used to discretize the space directions. The efficiency of the method is demonstrated through numerical results, and error norms are examined at various values of the non-integer parameter, temporal directions, and spatial directions.

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Hayat, A. M., Abbas, M., Emadifar, H., Alzaidi, A. S. M., Nazir, T., & Abdullah, F. A. (2024). An efficient computational scheme for solving coupled time-fractional Schrödinger equation via cubic B-spline functions. PLoS ONE, 19(5 May). https://doi.org/10.1371/journal.pone.0296909

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