English

Age of massive galaxies at redshift 8

Cosmology and Nongalactic Astrophysics 2024-05-24 v2

Abstract

Recent James Webb Space Telescope (JWST) data analyses have shown that massive red galaxies existed at redshifts z>6z>6, a discovery that is difficult to understand in the context of standard cosmology (Λ\Lambda CDM). Here we analyze these observations more deeply by fitting a stellar population model to the optical and near-infrared photometric data. These fits include a main stellar population in addition to a residual younger population and with the same extinction for both (a lower extinction for the younger population is unphysical). Extra stellar populations or the inclusion of an AGN component do not significantly improve the fits. These galaxies are being viewed at very high redshifts, with an average z8.2\langle z\rangle \approx 8.2, when the Λ\LambdaCDM Universe was only 600\approx 600 Myr old. This result conflicts with the inferred ages of these galaxies, however, which were on average between 0.9 and 2.4 Gyr old within 95% CL. Given the sequence of star formation and galaxy assembly in the standard model, these galaxies should instead be even younger than 290 Myr on average, for which our analysis assigns a probability of only <3×104<3\times 10^{-4} (3.6σ\gtrsim 3.6\sigma tension). This outcome may indicate the need to consider non-standard cosmologies. Nevertheless, our conclusions result from several approximations in stellar astrophysics and extinction, so they should be taken with a grain of salt. Further research is necessary to corroborate the possible existence of galaxies older than the Λ\Lambda CDM universe at their observed redshifts.

Keywords

Cite

@article{arxiv.2405.12665,
  title  = {Age of massive galaxies at redshift 8},
  author = {M. Lopez-Corredoira and F. Melia and J. -J. Wei and C. -Y. Gao},
  journal= {arXiv preprint arXiv:2405.12665},
  year   = {2024}
}

Comments

16 pages, 8 figures, accepted to be published in ApJ