English

Ammonia in the interstellar medium of a starbursting disc at z=2.6

Astrophysics of Galaxies 2022-10-05 v1

Abstract

We report the detection of the ground state rotational emission of ammonia, ortho-NH3_3 (JK=1000)(J_K=1_0\rightarrow0_0) in a gravitationally lensed, intrinsically hyperluminous, star-bursting galaxy at z=2.6z=2.6. The integrated line profile is consistent with other molecular and atomic emission lines which have resolved kinematics well-modelled by a 5 kpc-diametre rotating disc. This implies that the gas responsible for NH3_3 emission is broadly tracing the global molecular reservoir, but likely distributed in pockets of high density (n5×104n\gtrsim5\times10^4 cm3^{-3}). With a luminosity of 2.8×1062.8\times10^{6} LL_\odot, the NH3_3 emission represents 2.5×1072.5\times10^{-7} of the total infrared luminosity of the galaxy, comparable to the ratio observed in the Kleinmann-Low nebula in Orion and consistent with sites of massive star formation in the Milky Way. If LNH3/LIRL_{\rm NH_3}/L_{\rm IR} serves as a proxy for the 'mode' of star formation, this hints that the nature of star formation in extreme starbursts in the early Universe is similar to that of Galactic star-forming regions, with a large fraction of the cold interstellar medium in this state, plausibly driven by a storm of violent disc instabilities in the gas-dominated disc. This supports the 'full of Orions' picture of star formation in the most extreme galaxies seen close to the peak epoch of stellar mass assembly.

Keywords

Cite

@article{arxiv.2209.09268,
  title  = {Ammonia in the interstellar medium of a starbursting disc at z=2.6},
  author = {M. J. Doherty and J. E. Geach and R. J. Ivison and K. M. Menten and A. M. Jacob and J. Forbrich and S. Dye},
  journal= {arXiv preprint arXiv:2209.09268},
  year   = {2022}
}

Comments

5 pages, 3 figures, accepted for publication in MNRAS Letters