English

A Multiwavelength Look at Galactic Massive Star Forming Regions

Astrophysics of Galaxies 2018-09-20 v2 Solar and Stellar Astrophysics

Abstract

We present a multiwavelength study of 28 Galactic massive star-forming H II regions. For 17 of these regions, we present new distance measurements based on Gaia DR2 parallaxes. By fitting a multicomponent dust, blackbody, and power-law continuum model to the 3.6 μ\mum through 10 mm spectral energy distributions, we find that 34{\sim}34% of Lyman continuum photons emitted by massive stars are absorbed by dust before contributing to the ionization of H II regions, while 68{\sim}68% of the stellar bolometric luminosity is absorbed and reprocessed by dust in the H II regions and surrounding photodissociation regions. The most luminous, infrared-bright regions that fully sample the upper stellar initial mass function (ionizing photon rates NC1050 s1N_C \ge 10^{50}~{\rm s}^{-1} and dust-processed LTIR106.8L_{\rm TIR}\ge 10^{6.8} L_{\odot}) have on average higher percentages of absorbed Lyman continuum photons (\sim51%) and reprocessed starlight (\sim82%) compared to less luminous regions. Luminous H II regions show lower average PAH fractions than less luminous regions, implying that the strong radiation fields from early-type massive stars are efficient at destroying PAH molecules. On average, the monochromatic luminosities at 8, 24, and 70 μ\mum combined carry 94% of the dust-reprocessed LTIRL_{\rm TIR}. L70L_{70} captures 52{\sim}52% of LTIRL_{\rm TIR}, and is therefore the preferred choice to infer the bolometric luminosity of dusty star-forming regions. We calibrate SFRs based on L24L_{24} and L70L_{70} against the Lyman continuum photon rates of the massive stars in each region. Standard extragalactic calibrations of monochromatic SFRs based on population synthesis models are generally consistent with our values.

Keywords

Cite

@article{arxiv.1808.00454,
  title  = {A Multiwavelength Look at Galactic Massive Star Forming Regions},
  author = {Breanna A. Binder and Matthew S. Povich},
  journal= {arXiv preprint arXiv:1808.00454},
  year   = {2018}
}

Comments

Accepted to AAS Journals; 35 pages, 10 figures, 8 tables

R2 v1 2026-06-23T03:21:55.626Z