English

The Dark Matter Halos of HI Selected Galaxies

Astrophysics of Galaxies 2021-12-22 v2 Cosmology and Nongalactic Astrophysics

Abstract

We present the neutral hydrogen mass (MHIM_{\text{HI}}) function (HIMF) and velocity width (w50w_{50}) function (HIWF) based on a sample of 7857 galaxies from the 40% data release of the ALFALFA survey (α.40\alpha.40). The low mass (velocity width) end of the HIMF (HIWF) is dominated by the blue population of galaxies whereas the red population dominates the HIMF (HIWF) at the high mass (velocity width) end. We use a deconvolution method to estimate the HI rotational velocity (VrotV_{\text{rot}}) functions (HIVF) from the HIWF for the total, red, and blue samples. The HIWF and HIVF for the red and blue samples are well separated at the knee of the function compared to their HIMFs. We then use recent stacking results from the ALFALFA survey to constrain the halo mass (MhM_{\text{h}}) function of HI-selected galaxies. This allows us to obtain various scaling relations between MHIw50VrotMhM_{\text{HI}} - w_{50} - V_{\text{rot}} - M_{\text{h}}, which we present. The MHIMhM_{\text{HI}} - M_{\text{h}} relation has a steep slope ~2.10 at small masses and flattens to ~0.34 at masses larger than a transition halo mass, log10(Mhth702/M)=10.62\log_{10}(M_{\text{ht}} h^2_{70}/M_{\odot})=10.62. Our scaling relation is robust and consistent with a volume-limited sample of α.40\alpha.40. The MHIMhM_{\text{HI}} - M_{\text{h}} relation is qualitatively similar to the MstarMhM_{\text{star}} - M_{\text{h}} relation but the transition halo mass is smaller by ~1.4 dex compared to that of the MstarMhM_{\text{star}} - M_{\text{h}} relation. Our results suggest that baryonic processes like heating and feedback in larger mass halos suppress HI gas on a shorter time scale compared to star-formation.

Keywords

Cite

@article{arxiv.2108.03253,
  title  = {The Dark Matter Halos of HI Selected Galaxies},
  author = {Saili Dutta and Nishikanta Khandai and Sandeep Rana},
  journal= {arXiv preprint arXiv:2108.03253},
  year   = {2021}
}

Comments

17 pages, 11 figures, 2 tables, Accepted for publication in MNRAS