The dust SED of dwarf galaxies I. The case of NGC 4214
arXiv:1210.7067 · doi:10.1051/0004-6361/201219966
Abstract
The goal of the present study is to establish the physical origin of dust heating and emission based on radiation transfer models, which self-consistently connect the emission components from diffuse dust and the dust in massive star forming regions. NGC 4214 is a nearby dwarf galaxy with a large set of ancillary data, ranging from the ultraviolet (UV) to radio, including maps from SPITZER, HERSCHEL and detections from PLANCK. We mapped this galaxy with MAMBO at 1.2 mm at the IRAM 30 m telescope. We extract separate dust emission components for the HII regions (plus their associated PDRs on pc scales) and for the diffuse dust (on kpc scales). We analyse the full UV to FIR/submm SED of the galaxy using a radiation transfer model which self-consistently treats the dust emission from diffuse and SF complexes components, considering the illumination of diffuse dust both by the distributed stellar populations, and by escaping light from the HII regions. While maintaining consistency with the framework of this model we additionally use a model that provides a detailed description of the dust emission from the HII regions and their surrounding PDRs on pc scales. Due to the large amount of available data and previous studies for NGC 4214 very few free parameters remained in the model fitting process. We achieve a satisfactory fit for the emission from HII+PDR regions on pc scales, with the exception of the emission at 8\mi, which is underpredicted by the model. For the diffuse emission we achieve a good fit if we assume that about 30-70% of the emission escaping the HII+PDR regions is able to leave the galaxy without passing through a diffuse ISM, which is not an unlikely scenario for a dwarf galaxy which has recently undergone a nuclear starburst. We determine a dust-to-gas mass ratio of 350-390 which is close to the expected value based on the metallicity.
19 pages, 7 figures, accepted by A&A
References in corpus (16)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- Metallicity Effects on Dust Properties in Starbursting Galaxies
- The Behavior of the Aromatic Features in M101 HII Regions: Evidence for Dust Processing
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: IV The Controlling Parameters of the Starburst SED
- Stellar Evolutionary Effects on the Abundances of PAH and SN-Condensed Dust in Galaxies
- Dust in starburst nuclei and ULIRGs: SED models for observers
- Far-infrared to millimeter astrophysical dust emission I: A model based on physical properties of amorphous solids
- New Constraints on the Lyman Continuum Escape Fraction at z~1.3
- Dust Extinction and Emission in a Clumpy Galactic Disk. An Application of the Radiative Transfer Code TRADING
- The nature of the interstellar medium of the starburst low-metallicity galaxy Haro11: a multi-phase model of the infrared emission
- The Submm and mm Excess of the SMC: Magnetic Dipole Emission from Magnetic Nanoparticles?
- The Effect of Galactic Properties on the Escape Fraction of Ionizing Photons
- The Molecular Interstellar Medium of the Local Group Dwarf NGC6822
- The young stellar population of NGC 4214 as observed with HST. II. Results
Cited by in corpus (16)
- A Two-Parameter Model for the Infrared/Submillimeter/Radio Spectral Energy Distributions of Galaxies and AGN
- An Overview of the Dwarf Galaxy Survey
- Linking dust emission to fundamental properties in galaxies: The low-metallicity picture
- The bolometric and UV attenuation in normal spiral galaxies of the Herschel Reference Survey
- New Methods for Identifying Lyman Continuum Leakers and Reionization-Epoch Analogues
- Spatially-resolved dust properties of the GRB 980425 host galaxy
- Mapping the Escape Fraction of Ionizing Photons Using Resolved Stars: A Much Higher Escape Fraction for NGC 4214
- A multiwavelength study of the Magellanic-type galaxy NGC 4449 - I. Modelling the spectral energy distribution, the ionization structure and the star formation history
- Millimeter and Submillimeter Excess Emission in M33 revealed by Planck and LABOCA
- The Occulting Galaxy Pair UGC 3995; Dust properties from HST and CALIFA data
- VLT/VIMOS Observations of an Occulting Galaxy Pair: Redshifts and Effective Extinction Curve
- Modeling the physical properties in the ISM of the low-metallicity galaxy NGC4214
- Sequential Star Formation in the Young SMC Region NGC 602: Insights from ALMA
- Infrared photometry of Young Massive Clusters in the starburst galaxy NGC 4214
- Estimating the Oblateness Of Dark Matter Halos Using Neutral Hydrogen Velocity Dispersion
- Far-infrared to centimeter emission of very nearby galaxies with archival data