Exploring the Dark Universe: constraints on dynamical Dark Energy models from CMB, BAO and growth rate measurements
arXiv:1605.01984 · doi:10.1142/S0218271819501189
Abstract
In order to explain the current acceleration of the Universe, the fine tuning problem of the cosmological constant and the cosmic coincidence problem, different alternative models have been proposed in the literature. We use the most recent observational data from CMB (Planck 2018 final data release) and LSS (SDSS, WiggleZ, VIPERS) to constrain dynamical dark energy (DE) models. The CMB shift parameter, which traditionally has been used to determine the main cosmological parameters of the standard model is employed in addition to data from redshift-space distortions through the growth parameter to constrain the mass variance . BAO data is also used to study the history of the cosmological expansion and the main properties of DE. From the evolution of we found a slowdown of acceleration behaviour at low redshifts, and by using the Akaike and Bayesian Information Criterion (AIC, BIC) we discriminate different models those that are better suited to the observational data, finding that the interactive dark energy (IDE) model is the most favoured by observational data, including information from SNIa and Hz. The analysis shows that the IDE model is followed closely by EDE and models, which in some cases fit better the observational data with individual probes.
31 pages, 10 figures, 12 tables, Matches the version published in IJMPD. arXiv admin note: text overlap with arXiv:1711.09291 by other authors
References in corpus (11)
- Dynamics of dark energy
- Cosmology and the Fate of Dilatation Symmetry
- Dark Energy and the Accelerating Universe
- Cosmological Evolution of a Quintom Model of Dark Energy
- Dynamics of interacting dark energy
- The Subaru FMOS galaxy redshift survey (FastSound). IV. New constraint on gravity theory from redshift space distortions at
- The VIMOS Public Extragalactic Redshift Survey (VIPERS): The growth of structures at from redshift-space distortions in the clustering of the PDR-2 final sample
- N-Body Simulations of Alternate Gravity Models
- The WiggleZ Dark Energy Survey: constraining the evolution of Newton's constant using the growth rate of structure
- Constraints On Dark Energy Models From Galaxy Clusters and Gravitational Lensing Data
- Semi-Holographic Universe
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