Utility of observational Hubble parameter data on dark energy evolution
Abstract
Aiming at exploring the nature of dark energy, we use thirty-six observational Hubble parameter data (OHD) in the redshift range to make a cosmological model-independent test of the two-point diagnostic. In CDM, we have , where is the matter density parameter at present. We bin all the OHD into four data points to mitigate the observational contaminations. By comparing with the value of which is constrained tightly by the Planck observations, our results show that in all six testing pairs of there are two testing pairs are consistent with CDM at confidence level (CL), whereas for another two of them CDM can only be accommodated at CL. Particularly, for remaining two pairs, CDM is not compatible even at CL. Therefore it is reasonable that although deviations from CDM exist for some pairs, cautiously, we cannot rule out the validity of CDM. We further apply two methods to derive the value of Hubble constant utilizing the two-point diagnostic. We obtain from inverse variance weighted value (method (I)) and that the value originates from Planck measurement (method (II)), both at CL. Finally, we explore how the error in OHD propagate into at certain redshift during the reconstruction of . We argue that the current precision on OHD is not sufficient small to ensure the reconstruction of in an acceptable error range, especially at the low redshift
Cite
@article{arxiv.1507.02517,
title = {Utility of observational Hubble parameter data on dark energy evolution},
author = {Xiao-Lei Meng and Xin Wang and Shi-Yu Li and Tong-Jie Zhang},
journal= {arXiv preprint arXiv:1507.02517},
year = {2015}
}
Comments
8 pages, 6 figures