Quasar cosmology: dark energy evolution and spatial curvature

Author:

Bargiacchi G12ORCID,Benetti M12ORCID,Capozziello S123,Lusso E45ORCID,Risaliti G45,Signorini M45

Affiliation:

1. Scuola Superiore Meridionale , Largo S. Marcellino 10, I-80138 Napoli, Italy

2. Istituto Nazionale di Fisica Nucleare (INFN) , Sez. di Napoli, Complesso Univ. Monte S. Angelo, Via Cinthia 9, I-80126 Napoli, Italy

3. Dipartimento di Fisica ‘E. Pancini’, Università degli Studi di Napoli Federico II , Complesso Univ. Monte S. Angelo, Via Cinthia 9, I-80126 Napoli, Italy

4. Dipartimento di Fisica e Astronomia, Università degli Studi di Firenze , via G. Sansone 1, I-50019 Sesto Fiorentino, Firenze, Italy

5. Istituto Nazionale di Astrofisica (INAF) - Osservatorio Astrofisico di Arcetri , I-50125 Florence, Italy

Abstract

ABSTRACT We analyse some open debates in cosmology in light of the most updated quasar (QSO) sample, covering a wide redshift range up to $\mathit{ z}$ ∼ 7.5, combined with type Ia supernovae (SNe) and baryon acoustic oscillations (BAOs). Indeed, extending the cosmological analyses with high-redshift data is key to distinguishing between different cosmological models that are degenerate at low redshifts, and allowing better constraints on a possible dark energy (DE) evolution. Also, we discuss combinations of BAO, SNe, and QSO data to understand their compatibility and implications for extensions of the standard cosmological model. Specifically, we consider a flat and non-flat ΛCDM cosmology, a flat and non-flat DE model with a constant DE equation of state parameter (w), and four flat DE models with variable w, namely the Chevallier–Polarski–Linder and Jassal–Bagla–Padmanabhan models, and an ‘exponential’, and Barboza–Alcaniz parametrizations. We find that a joint analysis of QSO+SNe with BAO is only possible in the context of a flat Universe. Indeed BAO confirms the flatness condition assuming a curved geometry, whilst SNe + QSO show evidence of a closed space. We also find ΩM,0 = 0.3 in all data sets assuming a flat ΛCDM model. Yet, all the other models show a statistically significant deviation at 2-3 σ with the combined SNe + SO + BAO data set. In the models where DE density evolves with time, SNe + QSO + BAO data always prefer ΩM,0 > 0.3, w0 < −1 and wa > 0. This DE phantom behaviour is mainly driven by SNe + QSO, while BAO are closer to the flat ΛCDM model.

Funder

INFN

ASI

INAF

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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