Interpreting the star formation - extinction relation with MaNGA
Abstract
We investigate the resolved relation between local extinction and star formation surface density within nearby star-forming galaxies selected from the MaNGA survey. Balmer decrement measurements imply an extinction of the H{\alpha} line emission which scales approximately linearly with the logarithm of the star formation surface density: . Secondary dependencies are observed such that, at a given , regions of lower metallicity and/or enhanced H{\alpha} equivalent width (EW) suffer less obscuration than regions of higher metallicity and/or lower H{\alpha} EW. Spaxels lying above the mean relation also tend to belong to galaxies that are more massive, larger and viewed under higher inclination than average. We present a simple model in which the observed trends can be accounted for by a metallicity-dependent scaling between and via a super-linear Kennicutt-Schmidt relation () and a dust-to-gas ratio which scales linearly with metallicity (DGR() = 0.01). The relation between the resulting total dust column and observed effective extinction towards nebular regions requires a geometry for the relative distribution of H{\alpha} emitting regions and dust that deviates from a uniform foreground screen and also from an entirely homogeneous mixture of dust and emitting sources. The best-fit model features an H{\alpha} EW and galactocentric distance dependent fraction of the dust mass in a clumpy foreground screen in front of a homogeneous mixture.
Cite
@article{arxiv.1901.01707,
title = {Interpreting the star formation - extinction relation with MaNGA},
author = {Huan Li and Stijn Wuyts and Lei Hao and Lin Lin and Man I Lam and Médéric Boquien and Brett H. Andrews and Donald P. Schneider},
journal= {arXiv preprint arXiv:1901.01707},
year = {2019}
}
Comments
Accepted for publication in ApJ. Figures 2 and 3 show the observed star formation - extinction relation. Figures 9 and 10 show our favored model