English

The Evolution of the Interstellar Medium in Post-Starburst Galaxies

Astrophysics of Galaxies 2019-07-24 v2 Solar and Stellar Astrophysics

Abstract

We derive dust masses (MdustM_{\rm dust}) from the spectral energy distributions of 58 post-starburst galaxies (PSBs). There is an anticorrelation between specific dust mass (MdustM_{\rm dust}/MM_{\star}) and the time elapsed since the starburst ended, indicating that dust was either destroyed, expelled, or rendered undetectable over the \sim1 Gyr after the burst. The MdustM_{\rm dust}/MM_{\star} depletion timescale, 20537+58^{+58}_{-37} Myr, is consistent with that of the CO-traced MH2/MM_{\rm H_2}/M_{\star}, suggesting that dust and gas are altered via the same process. Extrapolating these trends leads to the Mdust/MM_{\rm dust}/M_{\star} and MH2/MM_{\rm H_2}/M_{\star} values of early-type galaxies (ETGs) within 1-2 Gyr, a timescale consistent with the evolution of other PSB properties into ETGs. Comparing MdustM_{\rm dust} and MH2M_{\rm H_2} for PSBs yields a calibration, log MH2M_{\rm H_2} = 0.45 log MdustM_{\rm dust} + 6.02, that allows us to place 33 PSBs on the Kennicutt-Schmidt (KS) plane, ΣSFRΣMH2\Sigma \rm SFR-\Sigma M_{\rm H_2}. Over the first \sim200-300 Myr, the PSBs evolve down and off of the KS relation, as their star formation rate (SFR) decreases more rapidly than MH2M_{\rm H_2}. Afterwards, MH2M_{\rm H_2} continues to decline whereas the SFR levels off. These trends suggest that the star-formation efficiency bottoms out at 1011 yr1^{-11}\ \rm yr^{-1} and will rise to ETG levels within 0.5-1.1 Gyr afterwards. The SFR decline after the burst is likely due to the absence of gas denser than the CO-traced H2_2. The mechanism of the Mdust/MM_{\rm dust}/M_{\star} andMH2/MM_{\rm H_2}/M_{\star} decline, whose timescale suggests active galactic nucleus (AGN) or low-ionization nuclear emission-line region (LINER) feedback, may also be preventing the large CO-traced molecular gas reservoirs from collapsing and forming denser star forming clouds.

Keywords

Cite

@article{arxiv.1906.01890,
  title  = {The Evolution of the Interstellar Medium in Post-Starburst Galaxies},
  author = {Zhihui Li and K. Decker French and Ann I. Zabludoff and Luis C. Ho},
  journal= {arXiv preprint arXiv:1906.01890},
  year   = {2019}
}

Comments

v1: 29 pages, 13 figures, to be published in ApJ. v2: Figure 6 and 7 fixed; more references added

R2 v1 2026-06-23T09:42:51.152Z