English

Uncertain Times: The Redshift-Time Relation from Cosmology and Stars

Cosmology and Nongalactic Astrophysics 2021-06-28 v2 Solar and Stellar Astrophysics

Abstract

Planck data provide precise constraints on cosmological parameters when assuming the base Λ\LambdaCDM model, including a 0.17%0.17\% measurement of the age of the Universe, t0=13.797±0.023Gyrt_0=13.797 \pm 0.023\,{\rm Gyr}. However, the persistence of the "Hubble tension" calls the base Λ\LambdaCDM model's completeness into question and has spurred interest in models such as Early Dark Energy (EDE) that modify the assumed expansion history of the Universe. We investigate the effect of EDE on the redshift-time relation ztz \leftrightarrow t and find that it differs from the base Λ\LambdaCDM model by at least 4%{\approx} 4\% at all tt and zz. As long as EDE remains observationally viable, any inferred tzt \leftarrow z or ztz \leftarrow t quoted to a higher level of precision do not reflect the current status of our understanding of cosmology. This uncertainty has important astrophysical implications: the reionization epoch - 10>z>610>z>6 - corresponds to disjoint lookback time periods in the base Λ\LambdaCDM and EDE models, and the EDE value of t0=13.25±0.17 Gyrt_0=13.25 \pm 0.17~{\rm Gyr} is in tension with published ages of some stars, star clusters, and ultra-faint dwarf galaxies. However, most published stellar ages do not include an uncertainty in accuracy (due to, e.g., uncertain distances and stellar physics) that is estimated to be 710%\sim7-10\%, potentially reconciling stellar ages with t0,EDEt_{0,\rm EDE}. We discuss how the big data era for stars is providing extremely precise ages (<1%<1\%) and how improved distances and treatment of stellar physics such as convection could result in ages accurate to 45%4-5\%, comparable to the current accuracy of tzt \leftrightarrow z. Such precise and accurate stellar ages can provide detailed insight into the high-redshift Universe independent of a cosmological model.

Keywords

Cite

@article{arxiv.2103.15825,
  title  = {Uncertain Times: The Redshift-Time Relation from Cosmology and Stars},
  author = {Michael Boylan-Kolchin and Daniel R. Weisz},
  journal= {arXiv preprint arXiv:2103.15825},
  year   = {2021}
}

Comments

20 pages, 9 figures; MNRAS (accepted). V2: minor revisions and clarifications; conclusions unchanged