We study epidemic Susceptible–Infected–Susceptible (SIS) models in the fractional setting. The novelty is to consider models in which the susceptible and infected populations evolve according to different fractional orders. We study a model based on the Caputo derivative, for which we establish existence results of the solutions. Furthermore, we investigate a model based on the Caputo–Fabrizio operator, for which we provide existence of solutions and a study of the equilibria. Both models can be framed in the context of SIS models with time-varying total population, in which the competition between birth and death rates is macroscopically described by the fractional orders of the derivatives. Numerical simulations for both models and a dire...
In this paper we study a fractional order model for malaria transmission. It is considered the integ...
The introduction of fractional-order derivatives to epidemiological compartment models, such as SIR ...
The goal of this work is the formulation and analysis of a Covid-19 transmission dynamics model whic...
We study epidemic Susceptible–Infected–Susceptible (SIS) models in the fractional setting. The novel...
In this paper, we consider the fractional SIS (susceptible-infectious-susceptible) epidemic model (α...
Mathematical modeling of infectious diseases with non-integer order getting attentions from scientis...
In this work, we introduce a minimal model for the current pandemic. It incorporates the basic compa...
In this work, we deal with the fractional-order SIS epidemic model with constant recruitment rate, m...
AbstractIn this work, we deal with the fractional-order SIS epidemic model with constant recruitment...
In this Paper, we proposed a fractional order SVIR epidemic model is incorporated to investigate its...
Abstract This article describes the corona virus spread in a population under certain assumptions wi...
In this contribution we address the following question: what is the behavior of a disease spreading ...
In this note we highlight the role of fractional linear birth and linear death processes, recently s...
In this paper, we have extended the model of HIV-1 infection to the fractional mathematical model us...
We proposed a new mathematical model to study the COVID-19 infection in piecewise fractional differe...
In this paper we study a fractional order model for malaria transmission. It is considered the integ...
The introduction of fractional-order derivatives to epidemiological compartment models, such as SIR ...
The goal of this work is the formulation and analysis of a Covid-19 transmission dynamics model whic...
We study epidemic Susceptible–Infected–Susceptible (SIS) models in the fractional setting. The novel...
In this paper, we consider the fractional SIS (susceptible-infectious-susceptible) epidemic model (α...
Mathematical modeling of infectious diseases with non-integer order getting attentions from scientis...
In this work, we introduce a minimal model for the current pandemic. It incorporates the basic compa...
In this work, we deal with the fractional-order SIS epidemic model with constant recruitment rate, m...
AbstractIn this work, we deal with the fractional-order SIS epidemic model with constant recruitment...
In this Paper, we proposed a fractional order SVIR epidemic model is incorporated to investigate its...
Abstract This article describes the corona virus spread in a population under certain assumptions wi...
In this contribution we address the following question: what is the behavior of a disease spreading ...
In this note we highlight the role of fractional linear birth and linear death processes, recently s...
In this paper, we have extended the model of HIV-1 infection to the fractional mathematical model us...
We proposed a new mathematical model to study the COVID-19 infection in piecewise fractional differe...
In this paper we study a fractional order model for malaria transmission. It is considered the integ...
The introduction of fractional-order derivatives to epidemiological compartment models, such as SIR ...
The goal of this work is the formulation and analysis of a Covid-19 transmission dynamics model whic...