English

Planck Observations of M33

Astrophysics of Galaxies 2018-04-11 v1

Abstract

We have performed a comprehensive investigation of the global integrated flux density of M33 from radio to ultraviolet wavelengths, finding that the data between \sim100 GHz and 3 THz are accurately described by a single modified blackbody curve with a dust temperature of TdustT_\mathrm{dust} = 21.67±\pm0.30 K and an effective dust emissivity index of βeff\beta_\mathrm{eff} = 1.35±\pm0.10, with no indication of an excess of emission at millimeter/sub-millimeter wavelengths. However, sub-dividing M33 into three radial annuli, we found that the global emission curve is highly degenerate with the constituent curves representing the sub-regions of M33. We also found gradients in TdustT_\mathrm{dust} and βeff\beta_\mathrm{eff} across the disk of M33, with both quantities decreasing with increasing radius. Comparing the M33 dust emissivity with that of other Local Group members, we find that M33 resembles the Magellanic Clouds rather than the larger galaxies, i.e., the Milky Way and M31. In the Local Group sample, we find a clear correlation between global dust emissivity and metallicity, with dust emissivity increasing with metallicity. A major aspect of this analysis is the investigation into the impact of fluctuations in the Cosmic Microwave Background (CMB) on the integrated flux density spectrum of M33. We found that failing to account for these CMB fluctuations would result in a significant over-estimate of TdustT_\mathrm{dust} by \sim5 K and an under-estimate of βeff\beta_\mathrm{eff} by \sim0.4.

Keywords

Cite

@article{arxiv.1803.10135,
  title  = {Planck Observations of M33},
  author = {C. T. Tibbs and F. P. Israel and R. J. Laureijs and J. A. Tauber and B. Partridge and M. W. Peel and L. Fauvet},
  journal= {arXiv preprint arXiv:1803.10135},
  year   = {2018}
}

Comments

Accepted for publication in MNRAS

R2 v1 2026-06-23T01:06:31.980Z