Distinguishing between HII regions and planetary nebulae with Hi-GAL, WISE, MIPSGAL, and GLIMPSE
arXiv:1110.3303 · doi:10.1051/0004-6361/201117640
Abstract
HII regions and planetary nebulae (PNe) both emit at radio and infrared (IR) wavelengths, and angularly small HII regions can be mistaken for PNe. This problem of classification is most severe for HII regions in an early evolutionary stage, those that are extremely distant, or those that are both young and distant. Using data from the Herschel Hi-GAL survey, as well as WISE and the Spitzer MIPSGAL and GLIMPSE surveys, we wish to establish characteristic IR colors that can be used to distinguish between HII regions and PNe. We perform aperture photometry measurements for a sample of 126 HII regions and 43 PNe at wavelengths from 8.0 micron to 500 micron. We find that HII regions and PNe have distinct IR colors. The most robust discriminating color criteria are [F12/F8] < 0.3, [F160/F12] > 1.3, and [F160/F24] > 0.8 (or alternately [F160/F22] > 0.8), where the brackets indicate the log of the flux ratio. All three of these criteria are individually satisfied by over 98% of our sample of HII regions and by about 10% of our sample of PNe. Combinations of these colors are more robust in separating the two populations; for example all HII regions and no PNe satisfy [F12/F8] < 0.4 and [F160/F22] > 0.8. When applied to objects of unknown classification, these criteria prove useful in separating the two populations. The dispersion in color is relatively small for HII regions; this suggests that any evolution in these colors with time for HII regions must be relatively modest. The spectral energy distributions (SEDs) of HII regions can be separated into "warm" and "cold" components. The "cold" component is well-fit by a grey-body of temperature 25K. The SEDs of nearly two-thirds of our sample of HII regions peak at 160 micron and one third peak at 70 micron. For PNe, 67% of the SEDs peak at 70 micron, 23% peak at either 22 micron or 24 micron, and 9% (two sources) peak at 160 micron.
Fixed typos, updated figures 1 and 2
References in corpus (9)
- Intrinsically Red Sources observed by Spitzer in the Galactic Mid-Plane
- The Green Bank Telescope HII Region Discovery Survey II. The Source Catalog
- IR Dust Bubbles: Probing the Detailed Structure and Young Massive Stellar Populations of Galactic HII Regions
- MASH-II: More Planetary Nebulae from the AAO/UKST HαSurvey
- The RMS Survey: Radio observations of candidate massive YSOs in the southern hemisphere
- Spitzer IRAC observations of newly-discovered planetary nebulae from the Macquarie-AAO-Strasbourg H-alpha Planetary Nebula Project
- SPITZER SAGE Observations of Large Magellanic Cloud Planetary Nebulae
- Multi-wavelength diagnostic properties of Galactic Planetary Nebulae detected by GLIMPSE-I
- MIPSGAL 24 μm Observations of Galactic Planetary Nebulae
Cited by in corpus (40)
- The WISE Catalog of Galactic HII Regions
- ATLASGAL --- Environments of 6.7\,GHz methanol masers
- The Dust Properties of Bubble HII Regions as seen by Herschel
- Galactic Supernova Remnant Candidates Discovered by THOR
- Finding Distant Galactic HII Regions
- A catalogue of integrated H-alpha fluxes for 1,258 Galactic planetary nebulae
- FEEDBACK: a SOFIA Legacy Program to Study Stellar Feedback in Regions of Massive Star Formation
- The Arecibo HII Region Discovery Survey
- New light on Galactic post-asymptotic giant branch stars. I. First distance catalogue
- Diversity of chemistry and excitation conditions in the high-mass star forming complex W33
- The planetary nebula Abell 48 and its [WN] nucleus
- Discovery of molecular and atomic clouds associated with the gamma-ray supernova remnant Kesteven 79
- The planetary nebula IPHASXJ211420.0+434136 (Ou5): insights into common-envelope dynamical and chemical evolution
- On the relationship between the H2 emission and the physical structure of planetary nebulae
- A Complete Catalogue of Dusty Supernova Remnants
- Molecular envelope around the HII region RCW 120
- The Infrared and Radio Fluxes Densities of Galactic HII Regions
- The Coordinated Radio and Infrared Survey for High-mass Star Formation. IV: A new radio selected sample of compact Galactic Planetary Nebulae
- On the shape of the mass-function of dense clumps in the Hi-GAL fields. I. SED determination and global properties of the mass-functions
- The blue supergiant MN18 and its bipolar circumstellar nebula
- Characterizing Wolf-Rayet Stars in the Near and Mid Infrared
- A Faraday Rotation Study of the Stellar Bubble and HII Region Associated with the W4 Complex
- The Milky Way Project: What are Yellowballs?
- The Co-Ordinated Radio and Infrared Survey for High-Mass Star Formation. V. The CORNISH-South Survey and Catalogue
- Kinematic distance study of the planetary nebulae-supernova remnant-HII region complex at G35.6-0.5
- A global view on star formation: The GLOSTAR Galactic plane survey. IX. Radio Source Catalog III: 2<l<28, 36<l<40, 56<l<60 and |b|<1, VLA B-configuration
- Determination of Planetary Nebulae angular diameters from radio continuum Spectral Energy Distribution modeling
- Discovery of new low-excitation planetary nebulae
- New Galactic Planetary Nebulae selected by radio and multi-wavelength characteristics
- Evolutionary Map of the Universe (EMU):Compact radio sources in the SCORPIO field towards the Galactic plane
- New Candidate Planetary Nebulae in Galactic Globular Clusters from the VVV Survey
- Unusual Galactic HII Regions at the Intersection of the Central Molecular Zone and the Far Dust Lane
- Global photometric analysis of galactic HII regions
- A Low Frequency Pilot Survey of Southern HII Regions in the Vela Constellation
- Star Formation in Extreme Environments: A 200 pc High Velocity Gas Stream in the Galactic Centre
- Searching for nascent planetary nebulae: OHPNe candidates in the SPLASH survey
- DT Serpentis: neither a symbiotic star nor a planetary nebula associate
- Estimating column density from ammonia (1,1) emission in star-forming regions
- The Milky Way Project: Probing Star Formation with First Results on Yellowballs from DR2
- Infrared Photometric Properties of Inner and Outer Parts of HII regions