THE CONNECTION BETWEEN REDDENING, GAS COVERING FRACTION, AND THE ESCAPE OF IONIZING RADIATION AT HIGH REDSHIFT ∗

  • Reddy N
  • Steidel C
  • Pettini M
  • et al.
129Citations
Citations of this article
41Readers
Mendeley users who have this article in their library.

Abstract

Using a large sample of spectroscopically confirmed galaxies, we establish an empirical relationship between reddening ( ), neutral gas covering fraction ( ), and the escape of ionizing (Lyman continuum, LyC) photons. Our sample includes 933 galaxies at of which have deep spectroscopic observations ( hr) at Å with the Low Resolution Imaging Spectrograph on Keck. The high covering fraction of outflowing optically thick indicated by the composite spectra of these galaxies implies that photoelectric absorption, rather than dust attenuation, dominates the depletion of LyC photons. By modeling the composite spectra as the combination of an unattenuated stellar spectrum including nebular continuum emission with one that is absorbed by and reddened by a line-of-sight extinction, we derive an empirical relationship between and . Galaxies with redder UV continua have larger covering fractions of  characterized by higher line-of-sight extinctions. We develop a model which connects the ionizing escape fraction with , and which may be used to estimate the ionizing escape fraction for an ensemble of galaxies. Alternatively, direct measurements of the escape fraction for our sample allow us to constrain the intrinsic LyC-to-UV flux density ratio to be , a value that favors stellar population models that include weaker stellar winds, a flatter initial mass function, and/or binary evolution. Last, we demonstrate how the framework discussed here may be used to assess the pathways by which ionizing radiation escapes from high-redshift galaxies.

Cite

CITATION STYLE

APA

Reddy, N. A., Steidel, C. C., Pettini, M., Bogosavljević, M., & Shapley, A. E. (2016). THE CONNECTION BETWEEN REDDENING, GAS COVERING FRACTION, AND THE ESCAPE OF IONIZING RADIATION AT HIGH REDSHIFT ∗. The Astrophysical Journal, 828(2), 108. https://doi.org/10.3847/0004-637x/828/2/108

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free