English

Evolution of CIV Absorbers. II. Where does CIV live?

Astrophysics of Galaxies 2022-01-12 v2

Abstract

We use the observed cumulative statistics of CIV absorbers and dark matter halos to infer the distribution of CIV-absorbing gas relative to galaxies at redshifts 0 ⁣ ⁣z ⁣ ⁣50\!\leq\!z\!\leq\!5. We compare the cosmic incidence dN/dXdN/dX of CIV absorber populations and galaxy halos, finding that massive LLL \geq L_{\star} halos alone cannot account for all the observed Wr0.05W_r \geq 0.05~{\AA} absorbers. However, the dN/dXdN/dX of lower mass halos exceeds that of Wr0.05W_r \geq 0.05~{\AA} absorbers. We also estimate the characteristic gas radius of absorbing structures required for the observed CIV dN/dXdN/dX, assuming each absorber is associated with a single galaxy halo. The Wr0.3W_r \geq 0.3~{\AA} and Wr0.6W_r \geq 0.6~{\AA} CIV gas radii are 3070%\sim30-70\% (2040%\sim20-40\%) of the virial radius of LL_{\star} (0.1L0.1L_{\star}) galaxies, and the Wr0.05W_r \geq 0.05~{\AA} gas radius is 100150%\sim100-150\%(60100%\sim60-100\%) of the virial radius of LL_{\star} (0.1L0.1L_{\star}) galaxies. For stronger absorbers, the gas radius relative to virial radius rises across Cosmic Noon and falls afterwards, while for weaker absorbers, the relative gas radius declines across Cosmic Noon and then dramatically rises at z ⁣< ⁣1z\!<\!1. A strong luminosity-dependence of gas radius implies highly extended CIV envelopes around massive galaxies before Cosmic Noon, while a luminosity-independent gas radius implies highly extended envelopes around dwarf galaxies after Cosmic Noon. From available absorber-galaxy and CIV evolution data, we favor a scenario in which low-mass galaxies enrich the volume around massive galaxies at early epochs and propose that the outer halo gas (>0.5Rv>0.5R_v) was produced primarily in ancient satellite dwarf galaxy outflows, while the inner halo gas (<0.5Rv<0.5R_v) originated from the central galaxy and persists as recycled accreting gas.

Keywords

Cite

@article{arxiv.2108.04924,
  title  = {Evolution of CIV Absorbers. II. Where does CIV live?},
  author = {Farhanul Hasan and Christopher W Churchill and Bryson Stemock and Nikole M Nielsen and Glenn G. Kacprzak and Mark Croom and Michael T Murphy},
  journal= {arXiv preprint arXiv:2108.04924},
  year   = {2022}
}

Comments

Accepted to ApJ; 22 pages (17 pages main text); 7 figures