Two Dynamical Scenarios for Binned Master Sample Interpretation

Fuente: arXiv
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Main Authors: Montani, Giovanni, Fazzari, Elisa, Carlevaro, Nakia, Dainotti, Maria Giovanna
Format: Preprint
Published: 2025
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author Montani, Giovanni
Fazzari, Elisa
Carlevaro, Nakia
Dainotti, Maria Giovanna
author_facet Montani, Giovanni
Fazzari, Elisa
Carlevaro, Nakia
Dainotti, Maria Giovanna
contents We analyze two different scenarios for the late Universe dynamics, resulting into Hubble parameters deviating from the $Λ$CDM, mainly for the presence of an additional free parameter, which is the dark energy parameter. The first model consists of a pure evolutionary dark energy paradigm, as result of its creation by the gravitational field of the expanding Universe. The second model also considers an interaction of the evolutionary dark energy with the matter component, postulated via the conservation of the sum of their ideal energy-momentum tensors. These two models are then compared \textit{via} the diagnostic tool of the effective running Hubble constant, with the binned data of the so-called ``Master sample'' for the Type Ia Supernovae. The comparison procedures, based on a standard MCMC analysis, led to a clear preference of data for the dark energy - matter interaction model, which is associated to a phantom matter equation of state parameter (very close to $-1$) when, being left free by data (it has a flat posterior), it is fixed in order to reproduce the decreasing power-law behavior of the effective running Hubble constant, already discussed in literature.
format Preprint
id arxiv_https___arxiv_org_abs_2507_14048
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Two Dynamical Scenarios for Binned Master Sample Interpretation
Montani, Giovanni
Fazzari, Elisa
Carlevaro, Nakia
Dainotti, Maria Giovanna
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
We analyze two different scenarios for the late Universe dynamics, resulting into Hubble parameters deviating from the $Λ$CDM, mainly for the presence of an additional free parameter, which is the dark energy parameter. The first model consists of a pure evolutionary dark energy paradigm, as result of its creation by the gravitational field of the expanding Universe. The second model also considers an interaction of the evolutionary dark energy with the matter component, postulated via the conservation of the sum of their ideal energy-momentum tensors. These two models are then compared \textit{via} the diagnostic tool of the effective running Hubble constant, with the binned data of the so-called ``Master sample'' for the Type Ia Supernovae. The comparison procedures, based on a standard MCMC analysis, led to a clear preference of data for the dark energy - matter interaction model, which is associated to a phantom matter equation of state parameter (very close to $-1$) when, being left free by data (it has a flat posterior), it is fixed in order to reproduce the decreasing power-law behavior of the effective running Hubble constant, already discussed in literature.
title Two Dynamical Scenarios for Binned Master Sample Interpretation
topic Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2507.14048