Sturm-Liouville Problem with Mixed Boundary Conditions for a Differential Equation with a Fractional Derivative and Its Application in Viscoelasticity Models

Author:

Kiryanova Ludmila1,Matseevich Tatiana1

Affiliation:

1. Department of Higher Mathematics, Moscow State University of Civil Engineering, Yaroslavskoe Shosse, 26, 129337 Moscow, Russia

Abstract

In this study, we obtained a system of eigenfunctions and eigenvalues for the mixed homogeneous Sturm-Liouville problem of a second-order differential equation containing a fractional derivative operator. The fractional differentiation operator was considered according to two definitions: Gerasimov-Caputo and Riemann-Liouville-Visualizations of the system of eigenfunctions, the biorthogonal system, and the distribution of eigenvalues on the real axis were presented. The numerical behavior of eigenvalues was studied depending on the order of the fractional derivative for both definitions of the fractional derivative.

Publisher

MDPI AG

Subject

Geometry and Topology,Logic,Mathematical Physics,Algebra and Number Theory,Analysis

Reference37 articles.

1. Nauka i Tekhnika, M. (1988). Fractional Integrals and Derivatives: Theory and Applications, Gordon and Breach Science Publishers. (In Russian).

2. Machado, J.A.T. (2019). Handbook of Fractional Calculus with Applications, De Gruyter GmbH.

3. Kilbas, A.A., Srivastava, H.M., and Trujillo, J.J. (2006). Theory and Applications of Fractional Differential Equations, Elsevier.

4. Sabatier, J., Agrawal, O.P., and Machado, A.T. (2007). Theoretical Developments and Applications in Physics and Engineering, Springer.

5. Tarasov, V.E. (2010). Fractional Dynamics: Applications of Fractional Calculus to Dynamics of Particles, Fields and Media, Springer.

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