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Towards a Unified Model for the `Diffuse Ionized Medium' in Normal and Starburst Galaxies

Astrophysics 2016-08-30 v1

Abstract

We analyze Hα\alpha images and long-slit spectra of samples of normal and starburst galaxies to better understand the nature of the diffuse, low-surface-brightness gas in these galaxies. We find that in both samples there is a strong inverse correlation between the Hα\alpha surface-brightness (ΣHα\Sigma_{H\alpha}) and the [SII]/Hα\alpha line ratio at a given location in the galaxy. However, the correlation for the starbursts is offset brightward by an order-of-magnitude in Hα\alpha surface-brightness at a given line ratio. In contrast, we find that all the galaxies (starburst and normal alike) define a universal relation between line ratio and the relative Hα\alpha surface brightness (ΣHα/Σe\Sigma_{H\alpha}/\Sigma_e, where Σe\Sigma_e is the mean Hα\alpha surface brightness within the galaxy half-light radius). We show that such a universal correlation is a natural outcome of a model in which the DIM is photoionized gas that has a characteristic thermal pressure (PP) that is proportional to the mean rate of star-formation per unit area in the galaxy (ΣSFR\Sigma_{SFR}). Good quantitative agreement with the data follows if we require the constant of proportionality to be consistent with the values of PP and ΣSFR\Sigma_{SFR} in the local disk of the Milky Way. Such a scaling between PP and ΣSFR\Sigma_{SFR} may arise either because feedback from massive stars heats the ISM or because ΣSFR\Sigma_{SFR} is determined (or limited) by the mean gas pressure.

Keywords

Cite

@article{arxiv.astro-ph/9807323,
  title  = {Towards a Unified Model for the `Diffuse Ionized Medium' in Normal and Starburst Galaxies},
  author = {Jing Wang and Timothy M. Heckman and Matthew D. Lehnert},
  journal= {arXiv preprint arXiv:astro-ph/9807323},
  year   = {2016}
}

Comments

AASTeX style latex file, two figures