English

Testing Star Formation Laws on Spatially Resolved Regions in a $z \approx 4.3$ Starburst Galaxy

Astrophysics of Galaxies 2019-06-07 v1

Abstract

We probe the star formation properties of the gas in AzTEC-1 in the COSMOS field, one of the best resolved and brightest starburst galaxies at z4.3z \approx 4.3, forming stars at a rate > 1000 Myr1\mathrm{M_{\odot}}\,\mathrm{yr^{-1}}. Using recent ALMA observations, we study star formation in the galaxy nucleus and an off-center star-forming clump and measure a median star formation rate (SFR) surface density of ΣSFRnucleus=270±54\Sigma^{\mathrm{nucleus}}_{\mathrm{SFR}} = 270\pm54 and ΣSFRsfclump=170±38Myr1kpc2\Sigma^{\mathrm{sfclump}}_{\mathrm{SFR}} = 170\pm38\,\mathrm{M_{\odot}}\,\mathrm{yr}^{-1}\,\mathrm{kpc}^{-2}, respectively. Following the analysis by Sharda et al. (2018), we estimate the molecular gas mass, freefall time and turbulent Mach number in these regions to predict ΣSFR\Sigma_{\mathrm{SFR}} from three star formation relations in the literature. The Kennicutt-Schmidt (Kennicutt 1998, KS) relation, which is based on the gas surface density, underestimates the ΣSFR\Sigma_{\mathrm{SFR}} in these regions by a factor 2-3. The ΣSFR\Sigma_{\mathrm{SFR}} we calculate from the single-freefall model of Krumholz et al. 2012 (KDM) is consistent with the measured ΣSFR\Sigma_{\mathrm{SFR}} in the nucleus and the star-forming clump within the uncertainties. The turbulence-regulated star formation relation by Salim et al. 2015 (SFK) agrees slightly better with the observations than the KDM relation. Our analysis reveals that an interplay between turbulence and gravity can help sustain high SFRs in high-redshift starbursts. It can also be extended to other high- and low-redshift galaxies thanks to the high angular resolution and sensitivity of ALMA observations.

Keywords

Cite

@article{arxiv.1906.01173,
  title  = {Testing Star Formation Laws on Spatially Resolved Regions in a $z \approx 4.3$ Starburst Galaxy},
  author = {Piyush Sharda and Elisabete da Cunha and Christoph Federrath and Emily Wisnioski and Enrico di Teodoro and Ken-ichi Tadaki and Min Yun and Itziar Aretxaga and Ryohei Kawabe},
  journal= {arXiv preprint arXiv:1906.01173},
  year   = {2019}
}

Comments

9 pages, 5 figures, accepted for publication in MNRAS