English

Hubble Parameter and Baryon Acoustic Oscillation Measurement Constraints on the Hubble Constant, the Deviation from the Spatially-Flat $\Lambda$cdm Model, The Deceleration-Acceleration Transition Redshift, and Spatial Curvature

Cosmology and Nongalactic Astrophysics 2018-04-04 v2 General Relativity and Quantum Cosmology

Abstract

We compile a complete collection of reliable Hubble parameter H(z)H(z) data to redshift z2.36z \leq 2.36 and use them with the Gaussian Process method to determine continuous H(z)H(z) functions for various data subsets. From these continuous H(z)H(z)'s, summarizing across the data subsets considered, we find H067±4km/s/MpcH_0\sim 67 \pm 4\,\rm km/s/Mpc, more consistent with the recent lower values determined using a variety of techniques. In most data subsets, we see a cosmological deceleration-acceleration transition at 2σ\sigma significance, with the data subsets transition redshifts varying over 0.33<zda<1.00.33<z_{\rm da}<1.0 at 1σ\sigma significance. We find that the flat-Λ\LambdaCDM model is consistent with the H(z)H(z) data to a zz of 1.5 to 2.0, depending on data subset considered, with 2σ\sigma deviations from flat-Λ\LambdaCDM above this redshift range. Using the continuous H(z)H(z) with baryon acoustic oscillation distance-redshift observations, we constrain the current spatial curvature density parameter to be ΩK0=0.03±0.21\Omega_{K0}=-0.03\pm0.21, consistent with a flat universe, but the large error bar does not rule out small values of spatial curvature that are now under debate.

Keywords

Cite

@article{arxiv.1711.03437,
  title  = {Hubble Parameter and Baryon Acoustic Oscillation Measurement Constraints on the Hubble Constant, the Deviation from the Spatially-Flat $\Lambda$cdm Model, The Deceleration-Acceleration Transition Redshift, and Spatial Curvature},
  author = {Hai Yu and Bharat Ratra and Fa-Yin Wang},
  journal= {arXiv preprint arXiv:1711.03437},
  year   = {2018}
}

Comments

17 pages, 5 figures, version published in ApJ