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COMPARING [C ∥], H i, and CO DYNAMICS of NEARBY GALAXIES

  • W. J.G.De Blok
  • , F. Walter
  • , J. D.T. Smith
  • , R. Herrera-Camus
  • , A. D. Bolatto
  • , M. A. Requena-Torres
  • , A. F. Crocker
  • , K. V. Croxall
  • , R. C. Kennicutt
  • , J. Koda
  • , L. Armus
  • , M. Boquien
  • , D. Dale
  • , K. Kreckel
  • , S. Meidt
  • Netherlands Institute for Radio Astronomy
  • University of Cape Town
  • University of Groningen
  • Max Planck Institute for Astronomy
  • University of Toledo
  • University of Maryland, College Park
  • Space Telescope Science Institute
  • Reed College
  • Ohio State University
  • University of Cambridge
  • California Institute of Technology
  • Universidad de Antofagasta
  • University of Wyoming

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

The H i and CO components of the interstellar medium (ISM) are usually used to derive the dynamical mass of nearby galaxies. Both components become too faint to be used as a tracer in observations of high-redshift galaxies. In those cases, the 158 μm line of atomic carbon ([C ii]) may be the only way to derive . As the distribution and kinematics of the ISM tracer affects the determination of , it is important to quantify the relative distributions of H i, CO, and [C ii]. H i and CO are well-characterized observationally, however, for [C ii] only very few measurements exist. Here we compare observations of CO, H i, and [C ii] emission of a sample of nearby galaxies, drawn from the HERACLES, THINGS, and KINGFISH surveys. We find that within R 25, the average [C ii] exponential radial profile is slightly shallower than that of the CO, but much steeper than the H i distribution. This is also reflected in the integrated spectrum ("global profile"), where the [C ii] spectrum looks more like that of the CO than that of the H i. For one galaxy, a spectrally resolved comparison of integrated spectra was possible; other comparisons were limited by the intrinsic line-widths of the galaxies and the coarse velocity resolution of the [C ii] data. Using high-spectral-resolution SOFIA [C ii] data of a number of star forming regions in two nearby galaxies, we find that their [C ii] linewidths agree better with those of the CO than the H i. As the radial extent of a given ISM tracer is a key input in deriving from spatially unresolved data, we conclude that the relevant length-scale to use in determining based on [C ii] data, is that of the well-characterized CO distribution. This length scale is similar to that of the optical disk.

Original languageEnglish
Article number51
JournalAstronomical Journal
Volume152
Issue number2
DOIs
StatePublished - Aug 2016

Keywords

  • galaxies: ISM
  • galaxies: fundamental parameters
  • galaxies: kinematics and dynamics
  • radio lines: Galaxies
  • submillimeter: galaxies

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