SearcharxivSearch

arXiv subjects

Rodrigo Von Marttens

Publications and source records attributed to Rodrigo Von Marttens.

2 recordsLinked to original sources

The matter with(in) CPL

We introduce a two-parameter phenomenological extension of the $Λ$CDM model in which the equation of state parameter of the ``dust'' fluid becomes different from zero for redshifts below a transition value $z_t$. Using data from DESI DR2 BAO, DESY5 Sn~Ia and CMB distance priors ($R,l_A,ω_b$) data, we compare our model with the standard CPL parameterization $w_0-w_a$ for dynamical dark energy. Using the Deviance Information Criteria (DIC), we find that the two models are essentially indistinguishable ($Δ$DIC $<$ 2) and preferred over $Λ$CDM with a significance $\geq 3 σ$. We discuss how this parameterization finds a natural interpretation in the context of cosmological backreaction and derive a prediction for the evolution of the growth factor, discussing its impact on low redshift $fσ_8$ measurements.

astro-ph.CO

A novel approach to cosmological non-linearities as an effective fluid

We propose a two parameters extension of the flat $Λ$CDM model to capture the impact of matter inhomogeneities on our cosmological inference. Non virialized but non-linearly evolving overdense and underdense regions, whose abundance is quantified using the Press-Schechter formalism, are collectively described by two effective perfect fluids $ρ_{\rm{c}},ρ_{\rm{v}}$ with non vanishing equation of state parameters $w_{\rm{c,v}}\neq 0$. These fluids are coupled to the pressureless dust, akin to an interacting DM-DE scenario. The resulting phenomenology is very rich, and could potentially address a number of inconsistencies of the standard model, including a simultaneous resolution of the Hubble and $σ_8$ tensions. To assess the viability of the model, we set initial conditions compatible to the Planck 2018 best fit $Λ$CDM cosmology and fit its additional parameters using SN~Ia observations from DESY5, BAO distances from DESI DR2 and a sample of uncorrelated $fσ_8$ measurements. Our findings show that backreaction effects from the cosmic web could restore the concordance between early and late Universe cosmological probes.

astro-ph.CO