English

A Cautionary Tale of Attenuation in Star Forming Regions

Astrophysics of Galaxies 2020-04-15 v2

Abstract

The attenuation of light in star forming galaxies is correlated with a multitude of physical parameters including star formation rate, metallicity and total dust content. This variation in attenuation is even more prevalent on the kiloparsec scale, which is relevant to many current spectroscopic integral field unit surveys. To understand the cause of this variation, we present and analyse \textit{Swift}/UVOT near-UV (NUV) images and SDSS/MaNGA emission-line maps of 29 nearby (z<0.084z<0.084) star forming galaxies. We resolve kiloparsec-sized star forming regions within the galaxies and compare their optical nebular attenuation (i.e., the Balmer emission line optical depth, τBlτHβτHα\tau^l_B\equiv\tau_{\textrm{H}\beta}-\tau_{\textrm{H}\alpha}) and NUV stellar continuum attenuation (via the NUV power-law index, β\beta) to the attenuation law described by Battisti et al. The data agree with that model, albeit with significant scatter. We explore the dependence of the scatter of the β\beta-τBl\tau^l_B measurements from the star forming regions on different physical parameters, including distance from the nucleus, star formation rate and total dust content. Finally, we compare the measured τBl\tau^l_B and β\beta between the individual star forming regions and the integrated galaxy light. We find a strong variation in β\beta between the kiloparsec scale and the larger galaxy scale not seen in τBl\tau^l_B. We conclude that the sight-line dependence of UV attenuation and the reddening of β\beta due to the light from older stellar populations could contribute to the β\beta-τBl\tau^l_B discrepancy.

Keywords

Cite

@article{arxiv.1905.02166,
  title  = {A Cautionary Tale of Attenuation in Star Forming Regions},
  author = {M. Molina and N. Ajgaonkar and R. Yan and R. Ciardullo and C. Gronwall and M. Eracleous and M. Boquien and D. P. Schneider},
  journal= {arXiv preprint arXiv:1905.02166},
  year   = {2020}
}

Comments

Accepted to MNRAS March 29, 2020