English

H-alpha emission in local galaxies: star formation, time variability and the diffuse ionized gas

Astrophysics of Galaxies 2022-04-11 v2

Abstract

The nebular recombination line Hα\alpha is widely used as a star-formation rate (SFR) indicator in the local and high-redshift Universe. We present a detailed Hα\alpha radiative transfer study of high-resolution isolated Milky-Way and Large Magellanic Cloud simulations that include radiative transfer, non-equilibrium thermochemistry, and dust evolution. We focus on the spatial morphology and temporal variability of the Hα\alpha emission, and its connection to the underlying gas and star formation properties. The Hα\alpha and Hβ\beta radial and vertical surface brightness profiles are in excellent agreement with observations of nearby galaxies. We find that the fraction of Hα\alpha emission from collisional excitation amounts to fcol510%f_{\rm col}\sim5-10\%, only weakly dependent on radius and vertical height, and that scattering boosts the Hα\alpha luminosity by 40%\sim40\%. The dust correction via the Balmer decrement works well (intrinsic Hα\alpha emission recoverable within 25%25\%), though the dust attenuation law depends on the amount of attenuation itself both on spatially resolved and integrated scales. Important for the understanding of the Hα\alpha-SFR connection is the dust and helium absorption of ionizing radiation (Lyman continuum [LyC] photons), which are about fabs28%f_{\rm abs}\approx28\% and fHe9%f_{\rm He}\approx9\%, respectively. Together with an escape fraction of fesc6%f_{\rm esc}\approx6\%, this reduces the available budget for hydrogen line emission by nearly half (fH57%f_{\rm H}\approx57\%). We discuss the impact of the diffuse ionized gas, showing - among other things - that the extraplanar Hα\alpha emission is powered by LyC photons escaping the disc. Future applications of this framework to cosmological (zoom-in) simulations will assist in the interpretation of spectroscopy of high-redshift galaxies with the upcoming James Webb Space Telescope.

Keywords

Cite

@article{arxiv.2112.00027,
  title  = {H-alpha emission in local galaxies: star formation, time variability and the diffuse ionized gas},
  author = {Sandro Tacchella and Aaron Smith and Rahul Kannan and Federico Marinacci and Lars Hernquist and Mark Vogelsberger and Paul Torrey and Laura Sales and Hui Li},
  journal= {arXiv preprint arXiv:2112.00027},
  year   = {2022}
}

Comments

26 pages, 20 figures, matches version accepted for publication in MNRAS