A cosmological model for the present Universe is analyzed whose constituents are a non-interacting baryonic matter field and interacting dark matter and dark energy fields. The dark energy and dark matter are coupled through their effective barotropic indexes, which are considered as functions of the ratio of their energy densities. Two asymptotically stable cases are investigated for the ratio of the dark energy densities which have their parameters adjusted by considering best fits to Hubble function data. It is shown that the deceleration parameter, the density parameters, and the luminosity distance have the correct behavior which is expected for a viable present scenario of the Universe.Fil: Chimento, Luis Pascual. Consejo Nacional de ...
We consider a cosmological model with an interaction between dark matter and dark energy which leave...
In this paper, we study various cosmological models involving new nonlinear forms of interaction bet...
The two dark sectors of the universe - dark matter and dark energy - may interact with each other. B...
Modern Cosmology offers us a great understanding of the universe with striking precision, made possi...
MSc (Astrophysical Sciences), North-West University, Potchefstroom CampusWe investigate using dynami...
MSc (Astrophysical Sciences), North-West University, Potchefstroom CampusIn this study, cosmological...
It is generally assumed that the two dark components of the energy density of the universe, a smooth...
We investigate an interacting two-fluid cosmological model and introduce a scalar field representati...
We investigate a cosmological scenario with three interacting components that includes dark matter, ...
The physics of the dark energy and the dark matter is still an open issue in cosmology. The dark ene...
We investigate an interacting two-fluid cosmological model and introduce a scalar field representati...
Coupled dark matter-dark energy systems can suffer from non-adiabatic instabilities at early times a...
In this work we investigate the evolution of a Universe consisted of a scalar field, a dark matter f...
In this work we investigate the evolution of a Universe consisted of a scalar field, a dark matter f...
A cosmological scenario where dark matter interacts with a variable vacuum energy for a spatially fl...
We consider a cosmological model with an interaction between dark matter and dark energy which leave...
In this paper, we study various cosmological models involving new nonlinear forms of interaction bet...
The two dark sectors of the universe - dark matter and dark energy - may interact with each other. B...
Modern Cosmology offers us a great understanding of the universe with striking precision, made possi...
MSc (Astrophysical Sciences), North-West University, Potchefstroom CampusWe investigate using dynami...
MSc (Astrophysical Sciences), North-West University, Potchefstroom CampusIn this study, cosmological...
It is generally assumed that the two dark components of the energy density of the universe, a smooth...
We investigate an interacting two-fluid cosmological model and introduce a scalar field representati...
We investigate a cosmological scenario with three interacting components that includes dark matter, ...
The physics of the dark energy and the dark matter is still an open issue in cosmology. The dark ene...
We investigate an interacting two-fluid cosmological model and introduce a scalar field representati...
Coupled dark matter-dark energy systems can suffer from non-adiabatic instabilities at early times a...
In this work we investigate the evolution of a Universe consisted of a scalar field, a dark matter f...
In this work we investigate the evolution of a Universe consisted of a scalar field, a dark matter f...
A cosmological scenario where dark matter interacts with a variable vacuum energy for a spatially fl...
We consider a cosmological model with an interaction between dark matter and dark energy which leave...
In this paper, we study various cosmological models involving new nonlinear forms of interaction bet...
The two dark sectors of the universe - dark matter and dark energy - may interact with each other. B...