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New cosmological constraints with extended-Baryon Oscillation Spectroscopic Survey DR14 quasar sample

Abstract

We update the constraints on the cosmological parameters by adopting the Planck data released in 2015 and Baryon Acoustic Oscillation (BAO) measurements including the new DR14 quasar sample measurement at redshift z=1.52z=1.52, and we conclude that the based six-parameter Λ\LambdaCDM model is preferred. Exploring some extensions to the Λ\LambdaCDM models, we find that the equation of state of dark energy reads w=1.036±0.056w=-1.036\pm 0.056 in the wwCDM model, the effective relativistic degrees of freedom in the Universe is Neff=3.090.20+0.18N_\text{eff}=3.09_{-0.20}^{+0.18} in the Neff+ΛN_\text{eff}+\LambdaCDM model and the spatial curvature parameter is Ωk=(1.8±1.9)×103\Omega_k=(1.8\pm1.9)\times 10^{-3} in the Ωk+Λ\Omega_k+\LambdaCDM model at 68%68\% confidence level (C.L.), and the 95%95\% C.L. upper bounds on the sum of three active neutrinos masses are mν<0.16\sum m_\nu<0.16 eV for the normal hierarchy (NH) and mν<0.19\sum m_\nu<0.19 eV for the inverted hierarchy (IH) with Δχ2χNH2χIH2=1.25\Delta\chi^2\equiv \chi^2_\text{NH}-\chi^2_\text{IH}=-1.25.Comment: 9 pages, 5 figures, 4 table

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