In this paper we study an n-dimensional generalization of time-fractional diffusion-wave equation, where the Laplacian operator is replaced by the ultra-hyperbolic operator and the time-fractional derivative is taken in the Hilfer sense. The analytical solution is obtained in terms of the Fox's H-function, for which the inverse Fourier transform of a Mittag–Leffler-type function that contains in its argument a positive-definite quadratic form is calculated.Fil: Dorrego, Gustavo. Universidad Nacional del Nordeste. Facultad de Ciencias Exactas y Naturales y Agrimensura. Departamento de Matemática; Argentina. Consejo Nacional de Investigaciones Científicas y Técnicas; Argentin
This paper deals with a theoretical mathematical analysis of a Cauchy problem for the time-fractiona...
AbstractThe time fractional diffusion-wave equation is obtained from the classical diffusion or wave...
We deal with a partial differential equation of fractional order where the time derivative of order ...
The objective of the present work is to study a generalization of the ultra-hyperbolic diffusion-wav...
This book systematically presents solutions to the linear time-fractional diffusion-wave equation. I...
In this work, we consider the multidimensional time-fractional diffusion equation with the $\psi$-Hi...
A fractional order time-independent form of the wave equation or diffusion equation in two dimension...
In this paper, we present some new integral and series representations for the eigenfunctions of the...
AbstractThe time fractional diffusion-wave equation is obtained from the classical diffusion or wave...
In this paper, the time-fractional wave equation associated with the space-fractional Fokker–Planck ...
In this work, we consider the multidimensional time-fractional diffusion equation with the $\psi$-Hi...
In this work, we consider the multidimensional time-fractional diffusion equation with the $\psi$-Hi...
This paper deals with the investigation of the solution of the time-fractional telegraph equation in...
The time-fractional diffusion-wave equation is revisited, where the time derivative is of order 2 ν ...
This paper deals with the investigation of the solution of the time-fractional telegraph equation in...
This paper deals with a theoretical mathematical analysis of a Cauchy problem for the time-fractiona...
AbstractThe time fractional diffusion-wave equation is obtained from the classical diffusion or wave...
We deal with a partial differential equation of fractional order where the time derivative of order ...
The objective of the present work is to study a generalization of the ultra-hyperbolic diffusion-wav...
This book systematically presents solutions to the linear time-fractional diffusion-wave equation. I...
In this work, we consider the multidimensional time-fractional diffusion equation with the $\psi$-Hi...
A fractional order time-independent form of the wave equation or diffusion equation in two dimension...
In this paper, we present some new integral and series representations for the eigenfunctions of the...
AbstractThe time fractional diffusion-wave equation is obtained from the classical diffusion or wave...
In this paper, the time-fractional wave equation associated with the space-fractional Fokker–Planck ...
In this work, we consider the multidimensional time-fractional diffusion equation with the $\psi$-Hi...
In this work, we consider the multidimensional time-fractional diffusion equation with the $\psi$-Hi...
This paper deals with the investigation of the solution of the time-fractional telegraph equation in...
The time-fractional diffusion-wave equation is revisited, where the time derivative is of order 2 ν ...
This paper deals with the investigation of the solution of the time-fractional telegraph equation in...
This paper deals with a theoretical mathematical analysis of a Cauchy problem for the time-fractiona...
AbstractThe time fractional diffusion-wave equation is obtained from the classical diffusion or wave...
We deal with a partial differential equation of fractional order where the time derivative of order ...