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Sökning: id:"swepub:oai:lup.lub.lu.se:a915a6b6-4721-471e-b36d-18ffbb478faa" > On the Evolution of...

On the Evolution of the Hubble Constant with the SNe Ia Pantheon Sample and Baryon Acoustic Oscillations : A Feasibility Study for GRB-Cosmology in 2030

Dainotti, Maria Giovanna (författare)
Space Science Institute,Graduate University for Advanced Studies,National Astronomical Observatory of Japan
De Simone, Biagio (författare)
University of Salerno
Schiavone, Tiziano (författare)
University of Pisa,INFN Section of Pisa
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Montani, Giovanni (författare)
Frascati Research Centre,Sapienza University of Rome
Rinaldi, Enrico (författare)
University of Michigan,RIKEN SPring-8 center
Lambiase, Gaetano (författare)
University of Salerno
Bogdan, Malgorzata (författare)
Lund University,Lunds universitet,Statistiska institutionen,Ekonomihögskolan,Department of Statistics,Lund University School of Economics and Management, LUSEM,Wroclaw University
Ugale, Sahil (författare)
Mithibai College of Arts, Chauhan Institute of Science & Amrutben Jivanlal College of Commerce and Economics
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 (creator_code:org_t)
2022-01-29
2022
Engelska.
Ingår i: Galaxies. - : MDPI AG. - 2075-4434. ; 10:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The difference from 4 to 6 σ in the Hubble constant (H0 ) between the values observed with the local (Cepheids and Supernovae Ia, SNe Ia) and the high-z probes (Cosmic Microwave Background obtained by the Planck data) still challenges the astrophysics and cosmology community. Previous analysis has shown that there is an evolution in the Hubble constant that scales as f (z) = H0/(1 + z)η, where H0 is H0 (z = 0) and η is the evolutionary parameter. Here, we investigate if this evolution still holds by using the SNe Ia gathered in the Pantheon sample and the Baryon Acoustic Oscillations. We assume H0 = 70 km s−1 Mpc−1 as the local value and divide the Pantheon into three bins ordered in increasing values of redshift. Similar to our previous analysis but varying two cosmological parameters contemporaneously (H0, Ω0m in the ΛCDM model and H0, wa in the w0waCDM model), for each bin we implement a Markov-Chain Monte Carlo analysis (MCMC) obtaining the value of H0 assuming Gaussian priors to restrict the parameters spaces to values we expect from our prior knowledge of the current cosmological models and to avoid phantom Dark Energy models with w < −1. Subsequently, the values of H0 are fitted with the model f (z). Our results show that a decreasing trend with η ∼ 10−2 is still visible in this sample. The η coefficient reaches zero in 2.0 σ for the ΛCDM model up to 5.8 σ for w0waCDM model. This trend, if not due to statistical fluctuations, could be explained through a hidden astrophysical bias, such as the effect of stretch evolution, or it requires new theoretical models, a possible proposition is the modified gravity theories, f (R). This analysis is meant to further cast light on the evolution of H0 and it does not specifically focus on constraining the other parameters. This work is also a preparatory to understand how the combined probes still show an evolution of the H0 by redshift and what is the current status of simulations on GRB cosmology to obtain the uncertainties on the Ω0m comparable with the ones achieved through SNe Ia.

Ämnesord

NATURVETENSKAP  -- Matematik -- Sannolikhetsteori och statistik (hsv//swe)
NATURAL SCIENCES  -- Mathematics -- Probability Theory and Statistics (hsv//eng)

Nyckelord

Cosmology
Evolution
Gravity
Hubble
Ia
Modified
Supernovae
Tension
Theories
ΛCDM

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