We consider cosmologies in which a dark-energy scalar field interacts with cold dark matter. The growth of perturbations is followed beyond the linear level by means of the time-renormalization-group method, which is extended to describe a multicomponent matter sector. Even in the absence of the extra interaction, a scale-dependent bias is generated as a consequence of the different initial conditions for baryons and dark matter after decoupling. The effect is enhanced significantly by the extra coupling and can be at the 2%–3% level in the range of scales of baryonic acoustic oscillations. We compare our results with N-body simulations, finding very good agreement
We investigate the capabilities of perturbation theory in capturing non-linear effects of dark energ...
We investigate the capabilities of perturbation theory in capturing non-linear effects of dark energ...
We present a complete numerical study of cosmological models with a time-dependent coupling betw...
We consider cosmologies in which a dark-energy scalar field interacts with cold dark matter. The gro...
We consider cosmologies in which a dark-energy scalar field interacts with cold dark matter. The gro...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
We study a coupled quintessence model in which the interaction with the dark-matter sector is a func...
Dark energy is frequently modelled as an additional dynamical scalar field component in the Universe...
We study the nonlinear evolution of density perturbations in cosmologies where the late-time acceler...
We study the non-linear growth of cosmic structure in different dark energy models, using large volu...
[[abstract]]We investigate the effects of the nonminimal coupling between the scalar field dark ener...
A semi-analytic approach to the computation of the non-linear power-spectrum of dark matter density ...
Renormalization Group (RG) techniques have been successfully employed in quantum field theory and st...
We investigate the capabilities of perturbation theory in capturing non-linear effects of dark energ...
We investigate the capabilities of perturbation theory in capturing non-linear effects of dark energ...
We present a complete numerical study of cosmological models with a time-dependent coupling betw...
We consider cosmologies in which a dark-energy scalar field interacts with cold dark matter. The gro...
We consider cosmologies in which a dark-energy scalar field interacts with cold dark matter. The gro...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
Models with dark energy decaying into dark matter have been proposed to solve the coincidence proble...
We study a coupled quintessence model in which the interaction with the dark-matter sector is a func...
Dark energy is frequently modelled as an additional dynamical scalar field component in the Universe...
We study the nonlinear evolution of density perturbations in cosmologies where the late-time acceler...
We study the non-linear growth of cosmic structure in different dark energy models, using large volu...
[[abstract]]We investigate the effects of the nonminimal coupling between the scalar field dark ener...
A semi-analytic approach to the computation of the non-linear power-spectrum of dark matter density ...
Renormalization Group (RG) techniques have been successfully employed in quantum field theory and st...
We investigate the capabilities of perturbation theory in capturing non-linear effects of dark energ...
We investigate the capabilities of perturbation theory in capturing non-linear effects of dark energ...
We present a complete numerical study of cosmological models with a time-dependent coupling betw...