This article is devoted to the determination of numerical solutions for the two-dimensional time–spacefractional Schrödinger equation. To do this, the unknown parameters are obtained using the Laguerre wavelet approach. We discretize the problem by using this technique. Then, we solve the discretized nonlinear problem by means of a collocation method. The method was proven to give very accurate results. The given numerical examples support this claim.

Laguerre Wavelet Approach for a Two-Dimensional Time–Space Fractional Schrödinger Equation

Bekiros S.;
2022-01-01

Abstract

This article is devoted to the determination of numerical solutions for the two-dimensional time–spacefractional Schrödinger equation. To do this, the unknown parameters are obtained using the Laguerre wavelet approach. We discretize the problem by using this technique. Then, we solve the discretized nonlinear problem by means of a collocation method. The method was proven to give very accurate results. The given numerical examples support this claim.
2022
24
8 - Article number 1105
1
9
fractional derivative; Laguerre wavelet; Schrödinger equation; two-dimensional fractional equation
Bekiros S.; Soradi-Zeid S.; Mou J.; Yousefpour A.; Zambrano-Serrano E.; Jahanshahi H.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1911631
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