arXiv · 1911.01681
Cosmography and flat $Λ$CDM tensions at high redshift
Abstract
Risaliti, Lusso \& collaborators have constructed a high-redshift Hubble diagram of supernovae (SNe); quasars (QSO) and gamma-ray bursts (GRB) that shows a "$\sim 4 \, σ$ tension with the $Λ$CDM model" based on a log polynomial cosmographic expansion (Risaliti et.al 2018, Lusso et.al 2019). In this work, we demonstrate that the log polynomial expansion generically fails to recover flat $Λ$CDM beyond $z \sim 2$, thus undermining the $\sim 4 \, σ$ tension claim. Moreover, through direct fits of both the flat $Λ$CDM and the log polynomial model to the SNe+QSO+GRB dataset, we confirm that the flat $Λ$CDM model is preferred. Ultimately, we trace the tension to the QSO data and show that a best-fit of the flat $Λ$CDM model to the QSO data leads to a flat $Λ$CDM Universe with no dark energy within $1 \, σ$. This marks an irreconcilable tension between the Risaliti-Lusso QSOs and flat $Λ$CDM.
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Tao Yang, Aritra Banerjee, Eoin Ó Colgáin. 2020-12-23. Cosmography and flat $Λ$CDM tensions at high redshift. https://doi.org/10.1103/physrevd.102.123532
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