English

Outflows and extended [CII] halos in high redshift galaxies

Astrophysics of Galaxies 2020-05-13 v2 Cosmology and Nongalactic Astrophysics

Abstract

Recent stacked ALMA observations have revealed that normal, star-forming galaxies at z6z\approx 6 are surrounded by extended (10kpc\approx 10\,\mathrm{kpc}) [CII] emitting halos which are not predicted by the most advanced, zoom-in simulations. We present a model in which these halos are the result of supernova-driven cooling outflows. Our model contains two free parameters, the outflow mass loading factor, η\eta, and the parent galaxy dark matter halo circular velocity, vcv_c. The outflow model successfully matches the observed [CII] surface brightness profile if η=3.20±0.10\eta = 3.20 \pm 0.10 and vc=170±10kms1v_c = 170 \pm 10{\,\rm km\,s^{-1}}, corresponding to a dynamical mass of 1011M\approx 10^{11}\, \mathrm{M}_\odot. The predicted outflow rate and velocity range are 128±5Myr1128 \pm 5 \,\mathrm{M}_\odot {\rm yr}^{-1} and 300500kms1300-500 {\,\rm km\,s^{-1}}, respectively. We conclude that: (a) extended halos can be produced by cooling outflows; (b) the large η\eta value is marginally consistent with starburst-driven outflows, but it might indicate additional energy input from AGN; (c) the presence of [CII] halos requires an ionizing photon escape fraction from galaxies fesc1f_{\rm esc} \ll 1. The model can be readily applied also to individual high-zz galaxies, as those observed, e.g., by the ALMA ALPINE survey now becoming available.

Keywords

Cite

@article{arxiv.2001.10547,
  title  = {Outflows and extended [CII] halos in high redshift galaxies},
  author = {Elia Pizzati and Andrea Ferrara and Andrea Pallottini and Simona Gallerani and Livia Vallini and Davide Decataldo and Seiji Fujimoto},
  journal= {arXiv preprint arXiv:2001.10547},
  year   = {2020}
}

Comments

13 pages, 7 figures; accepted for publication in MNRAS

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