Numerical solution of fractional-in-space nonlinear Schrödinger equation with the Riesz fractional derivative
KM Owolabi, A Atangana - The European Physical Journal Plus, 2016 - Springer
In this paper, dynamics of time-dependent fractional-in-space nonlinear Schrödinger
equation with harmonic potential V(x),x∈R in one, two and three dimensions have been …
equation with harmonic potential V(x),x∈R in one, two and three dimensions have been …
An adaptive finite element method for Riesz fractional partial integro-differential equations
The Riesz fractional derivative has been employed to describe the spatial derivative in a
variety of mathematical models. In this work, the accuracy of the finite element method (FEM) …
variety of mathematical models. In this work, the accuracy of the finite element method (FEM) …
Numerical solution of diffusive HBV model in a fractional medium
KM Owolabi - SpringerPlus, 2016 - Springer
Evolution systems containing fractional derivatives can result to suitable mathematical
models for describing better and important physical phenomena. In this paper, we consider …
models for describing better and important physical phenomena. In this paper, we consider …
Homotopy analysis Sumudu transform method for time—fractional third order dispersive partial differential equation
In this article, we apply the newly introduced numerical method which is a combination of
Sumudu transforms and Homotopy analysis method for the solution of time fractional third …
Sumudu transforms and Homotopy analysis method for the solution of time fractional third …
Spatiotemporal chaos in diffusive systems with the Riesz fractional order operator
KM Owolabi, E Pindza - Chinese Journal of Physics, 2022 - Elsevier
A reliable and efficient numerical technique for the approximation of Riesz fractional partial
differential equations with chaotic and spatiotemporal chaos properties is developed in this …
differential equations with chaotic and spatiotemporal chaos properties is developed in this …
[PDF][PDF] Similarity solutions for solving Riesz fractional partial differential equations
In this work, we use the similarity method to solve fractional order partial differential
equations where the fractional derivative is defined in Riesz sense. Two examples are …
equations where the fractional derivative is defined in Riesz sense. Two examples are …
Fractional-order windkessel boundary conditions in a one-dimensional blood flow model for fractional flow reserve (FFR) estimation
T Gamilov, R Yanbarisov - Fractal and Fractional, 2023 - mdpi.com
Recent studies have demonstrated the benefits of using fractional derivatives to simulate a
blood pressure profile. In this work we propose to combine a one-dimensional model of …
blood pressure profile. In this work we propose to combine a one-dimensional model of …
A Chebyshev spatial discretization method for solving fractional Fokker–Planck equation with Riesz derivatives
A Dabiri, BP Moghadam… - Special functions and …, 2020 - taylorfrancis.com
The theory yields a partial differential equation initially introduced by Fokker and Planck, and
presently called the Fokker-Planck equation. The most popular numerical methods that have …
presently called the Fokker-Planck equation. The most popular numerical methods that have …
Numerical solution for Riesz fractional diffusion equation via fractional centered difference scheme
S VALIZADEH, A BORHANIFAR - Walailak Journal of Science and …, 2021 - wjst.wu.ac.th
In this paper, a mixed matrix transform method with fractional centered difference scheme for
solving fractional diffusion equation with Riesz fractional derivative was examined. It was …
solving fractional diffusion equation with Riesz fractional derivative was examined. It was …
[PDF][PDF] Effect of temporal nonlocality and fractal geometry on modulational instability in optical metamaterials
AS Sylvère - 2022 - researchgate.net
Metamaterials (MMs) are artificially invented materials that show the properties which are
not found in naturally occuring materials [39-41, 12]. They are the man-made artificial …
not found in naturally occuring materials [39-41, 12]. They are the man-made artificial …