On generalized fractional operators and related function spaces with applications
From MaRDI portal
Publication:6558871
DOI10.1016/j.physd.2024.134212MaRDI QIDQ6558871
Kinga Chichon, Mieczysław Cichoń
Publication date: 21 June 2024
Published in: Physica D (Search for Journal in Brave)
Functions of one variable (26Axx) General theory for ordinary differential equations (34Axx) Nonlinear operators and their properties (47Hxx)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Tempered fractional calculus
- New approach to a generalized fractional integral
- A note on the existence and uniqueness of Hölder solutions of nonlinear singular integral equations
- Fractional derivatives for physicists and engineers. Volume I: Background and theory. Volume II: Applications
- A new representation formula for the Hilfer fractional derivative and its application
- Fractional relaxation-oscillation and fractional diffusion-wave phenomena.
- \(\psi\)-Hilfer pseudo-fractional operator: new results about fractional calculus
- An application of B. N. Sadovskij's fixed point principle to nonlinear singular equations
- Some properties of fractional integrals. I.
- On the space of functions with growths tempered by a modulus of continuity and its applications
- On fractional Orlicz-Sobolev spaces
- Tempered and Hadamard-type fractional calculus with respect to functions
- Lipschitz spaces adapted to Schrödinger operators and regularity properties
- On fractional calculus with analytic kernels with respect to functions
- On the Banach algebra of integral-variation type Hölder spaces and quadratic fractional integral equations
- A Hölder infinity Laplacian obtained as limit of Orlicz fractional Laplacians
- Mass-conserving tempered fractional diffusion in a bounded interval
- Fractional integrals and derivatives: mapping properties
- REVIEW OF SOME PROMISING FRACTIONAL PHYSICAL MODELS
- Fractional Integration in Orlicz Spaces. I
- On discrete tempered fractional calculus and its application
- General fractional integrals and derivatives and their applications
- GENERALIZED LAPLACE TRANSFORM AND TEMPERED Ψ-CAPUTO FRACTIONAL DERIVATIVE
- Fractional higher differentiability for solutions of stationary Stokes and Navier-Stokes systems with Orlicz growth
- Analytical solution of the fractional neutron point kinetic equations using the Mittag-Leffler function
- Discrete weighted fractional calculus and applications
This page was built for publication: On generalized fractional operators and related function spaces with applications