Cosmological scaling solutions are particularly important in solving the coincidence problem of dark energy. We derive the equations of sub-Hubble linear matter perturbations for a general scalar-field Lagrangian--including quintessence, tachyon, dilatonic ghost condensate and k-essence--and solve them analytically for scaling solutions. We find that matter perturbations are always damped if a phantom field is coupled to dark matter and identify the cases in which the gravitational potential is constant. This provides an interesting possibility to place stringent observational constraints on scaling dark energy models
The two dark sectors of the universe-dark matter and dark energy - may interact with each other. Bac...
We investigate an interacting dark energy model which allows for the kinetic term of the scalar fiel...
The Gauss-Bonnet (GB) curvature invariant coupled to a scalar field $\phi$ can lead to an exit from ...
AbstractCosmological scaling solutions are particularly important in solving the coincidence problem...
Cosmological scaling solutions are particularly important in solving the coincidence problem of dark...
Our ignorance about the source of cosmic acceleration has stimulated study of a wide range of models...
In dark energy models of scalar-field coupled to a barotropic perfect fluid, the existence of cosmol...
We investigate the cosmological evolution of an interacting phantom energy model in which the phanto...
We investigate a cosmological model in which dark energy, represented by a quintessential scalar fie...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
In this paper we review in detail a number of approaches that have been adopted to try and explain t...
International audienceWe consider scalar field models of dark energy interacting with dark matter th...
We highlight a viable mechanism leading to the formation of dark energy structures on sub-horizon co...
AbstractWe develop here a relatively simple description of dark energy based on the dynamics of non-...
We consider a quintessence model of dark energy inspired by scalar-tensor theories of gravity where ...
The two dark sectors of the universe-dark matter and dark energy - may interact with each other. Bac...
We investigate an interacting dark energy model which allows for the kinetic term of the scalar fiel...
The Gauss-Bonnet (GB) curvature invariant coupled to a scalar field $\phi$ can lead to an exit from ...
AbstractCosmological scaling solutions are particularly important in solving the coincidence problem...
Cosmological scaling solutions are particularly important in solving the coincidence problem of dark...
Our ignorance about the source of cosmic acceleration has stimulated study of a wide range of models...
In dark energy models of scalar-field coupled to a barotropic perfect fluid, the existence of cosmol...
We investigate the cosmological evolution of an interacting phantom energy model in which the phanto...
We investigate a cosmological model in which dark energy, represented by a quintessential scalar fie...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
In this paper we review in detail a number of approaches that have been adopted to try and explain t...
International audienceWe consider scalar field models of dark energy interacting with dark matter th...
We highlight a viable mechanism leading to the formation of dark energy structures on sub-horizon co...
AbstractWe develop here a relatively simple description of dark energy based on the dynamics of non-...
We consider a quintessence model of dark energy inspired by scalar-tensor theories of gravity where ...
The two dark sectors of the universe-dark matter and dark energy - may interact with each other. Bac...
We investigate an interacting dark energy model which allows for the kinetic term of the scalar fiel...
The Gauss-Bonnet (GB) curvature invariant coupled to a scalar field $\phi$ can lead to an exit from ...