High-resolution, 3D radiative transfer modelling III. The DustPedia barred galaxies
arXiv:2004.03616 · doi:10.1051/0004-6361/201936176
Abstract
Context: Dust in late-type galaxies in the local Universe is responsible for absorbing approximately one third of the energy emitted by stars. It is often assumed that dust heating is mainly attributable to the absorption of UV and optical photons emitted by the youngest (<= 100 Myr) stars. Consequently, thermal re-emission by dust at FIR wavelengths is often linked to the star-formation activity of a galaxy. However, several studies argue that the contribution to dust heating by much older stars might be more significant. Advances in radiation transfer (RT) simulations finally allow us to actually quantify the heating mechanisms of diffuse dust by the stellar radiation field. Aims: As one of the main goals in the DustPedia project, we have constructed detailed 3D stellar and dust RT models for nearby galaxies. We analyse the contribution of the different stellar populations to the dust heating in four face-on barred galaxies: NGC1365, M83, M95, and M100. We aim to quantify the fraction directly related to young stars, both globally and on local scales, and to assess the influence of the bar on the heating fraction. Results: We derive global attenuation laws for each galaxy and confirm that galaxies of high sSFR have shallower attenuation curves and weaker UV bumps. On average, 36.5% of the bolometric luminosity is absorbed by dust. We report a clear effect of the bar structure on the radial profiles of the dust-heating fraction by the young stars, and the dust temperature. We find that the young stars are the main contributors to the dust heating, donating, on average ~59% of their luminosity to this purpose throughout the galaxy. This dust-heating fraction drops to ~53% in the bar region and ~38% in the bulge region where the old stars are the dominant contributors to the dust heating. We also find a strong link between the heating fraction by the young stars and the sSFR.
References in corpus (31)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- HyperLEDA. III. The catalogue of extragalactic distances
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- Stellar Masses and SFRs for 1M Galaxies from SDSS and WISE
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: IV The Controlling Parameters of the Starburst SED
- UV Dust Attenuation in Star-forming Galaxies: II Calibrating the A(UV) vs. L_TIR/L_UV relation
- A new, large-scale map of interstellar reddening derived from HI emission
- DustPedia - A Definitive Study of Cosmic Dust in the Local Universe
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- Predicting Quiescence: The Dependence of Specific Star Formation Rate on Galaxy Size and Central Density at 0.5<z<2.5
- An Analysis of the Shapes of Interstellar Extinction Curves. VI. The Near-IR Extinction Law
- Old and young stellar populations in DustPedia galaxies and their role in dust heating
- Dust variations in the diffuse interstellar medium: constraints on Milky Way dust from Planck-HFI observations
- The dust distribution in edge-on galaxies. Radiative transfer fits of V and K'-band images
- The distribution of interstellar dust in CALIFA edge-on galaxies via oligochromatic radiative transfer fitting
- High-resolution, 3D radiative transfer modeling : I. The grand-design spiral galaxy M51
- A hidden reservoir of Fe/FeS in interstellar silicates?
- The Herschel Exploitation of Local Galaxy Andromeda (HELGA) VII: A SKIRT radiative transfer model and insights on dust heating
- The identification of dust heating mechanisms in nearby galaxies using Herschel 160/250 and 250/350 micron surface brightness ratios
- The distribution of stellar population age in galactic bars
- Large and small-scale structures and the dust energy balance problem in spiral galaxies
- Insights on bar quenching from a multi-wavelength analysis: The case of Messier 95
- High-Resolution Radiative Transfer Modelling of M33
- SKIRT: hybrid parallelization of radiative transfer simulations
- High-resolution, 3D radiative transfer modelling. II. The early-type spiral galaxy M81
- Near-infrared observations of star formation and gas flows in the NUGA galaxy NGC 1365
- Discovery of kpc-scale line emission in barred galaxies, not linked to AGN or star formation
- Which attenuation curves for star-forming galaxies?
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- High-resolution synthetic UV-submm images for simulated Milky Way-type galaxies from the Auriga project
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- Nonparametric galaxy morphology from UV to submm wavelengths
- High-resolution, 3D radiative transfer modelling IV. AGN-powered dust heating in NGC 1068
- Geometry effects on dust attenuation curves with different grain sources at high redshift
- Predicting the global far-infrared SED of galaxies via machine learning techniques
- The stratification of ISM properties in the edge-on galaxy NGC 891 revealed by NIKA2
- Deriving the intrinsic properties of M51 with radiative transfer models
- Predicting far-infrared maps of galaxies via machine learning techniques
- Relation of internal attenuation, dust emission, and the size of spiral galaxies. Calibration at low-z and how to use it as a cosmological test at high-z