English

Metal Deficiency in Two Massive Dead Galaxies at $z\sim2$

Astrophysics of Galaxies 2018-04-04 v1

Abstract

Local massive early-type galaxies are believed to have completed most of their star formation 10\sim10Gyr ago and evolved without having substantial star formation since. If so, their progenitors should have roughly solar stellar metallicities (ZZ_*), comparable to their values today. We report the discovery of two lensed massive (logM/M11\log M_*/M_\odot\sim11), z2.2z\sim2.2 dead galaxies, that appear markedly metal deficient given this scenario. Using 17-band HSTHST+KsK_{s}+SpitzerSpitzer photometry and deep HSTHST grism spectra from the GLASS and SN Refsdal follow-up campaigns covering features near λrest4000\lambda_{\rm rest}\sim4000\AA, we find these systems to be dominated by A-type stars with logZ/Z=0.40±0.02\log Z_*/Z_\odot=-0.40\pm0.02 and 0.49±0.03-0.49\pm0.03 (3030-40%40\% solar) under standard assumptions. The second system's lower metallicity is robust to isochrone changes, though this choice can drive the first system's from logZ/Z=0.6\log Z_*/Z_\odot=-0.6 to 0.1. If these two galaxies are representative of larger samples, this finding suggests that evolutionary paths other than dry minor-merging are required for these massive galaxies. Future analyses with direct metallicity measurements-e.g., by the James Webb Space TelescopeJames\ Webb\ Space\ Telescope-will provide critical insight into the nature of such phenomena.

Keywords

Cite

@article{arxiv.1803.01852,
  title  = {Metal Deficiency in Two Massive Dead Galaxies at $z\sim2$},
  author = {T. Morishita and L. E. Abramson and T. Treu and X. Wang and G. B. Brammer and P. Kelly and M. Stiavelli and T. Jones and K. B. Schmidt and M. Trenti and B. Vulcani},
  journal= {arXiv preprint arXiv:1803.01852},
  year   = {2018}
}

Comments

Accepted for publication in Astrophysical Journal Letters; 6 pages, 3 figures, 1 table