English

Ground- and Space-Based Dust Observations of VV 191 Overlapping Galaxy Pair

Astrophysics of Galaxies 2024-03-26 v1

Abstract

The Balmer decrement (Hα\alpha/Hβ\beta) provides a constraint on attenuation, the cumulative effects of dust grains in the ISM. The ratio is a reliable spectroscopic tool for deriving the dust properties of galaxies that determine many different quantities such as star formation rate, metallicity, and SED models. Here we measure independently both the attenuation and Hα\alpha/Hβ\beta of an occulting galaxy pair: VV 191. Attenuation measurements in the visible spectrum (AV,stars_{V,stars}) from dust maps derived from the F606W filter of HST and the F090W filter of JWST are matched with spaxel-by-spaxel Hα\alpha/Hβ\beta observations from the George and Cynthia Mitchell Spectrograph (GCMS) of the McDonald Observatory. The 0.5 to 0.7 micron bandpass covers the Balmer lines for VV 191. The dust maps of JWST and HST provide the high sensitivity necessary for comparisons and tracking trends of the geometrically favorable galaxy. We present maps and plots of the Balmer lines for the VV 191 galaxy pair and for a specific region highlighting dust lanes for VV 191b in the overlap region. We compute AV,HII_{V, HII} from Hα\alpha/Hβ\beta and plot both quantities against AV,stars_{V, stars}. Our results show that regions with higher dust content, residing closer to the spiral center, dominate ionized gas attenuation, leading to an overestimation of AV,HII_{V, HII} by a factor or 2. Further out in the spiral arms, the lower dust content leads to more agreement between the attenuations, indicating lower SFR and larger contribution from older stars to the stellar continuum outside the Petrosian radius.

Keywords

Cite

@article{arxiv.2403.15619,
  title  = {Ground- and Space-Based Dust Observations of VV 191 Overlapping Galaxy Pair},
  author = {C. Robertson and B. Holwerda and J. Young and W. Keel and J. Berkheimer and K. Cook and C. Conselice and B. Frye and N. Grogin and A. Koekemoer and C. Nasr and D. Patel and W. Roemer and D. Smith and R. Windhorst},
  journal= {arXiv preprint arXiv:2403.15619},
  year   = {2024}
}

Comments

21 pages, 14 figures, 2 tables, accepted for publication by The Astronomical Journal