Repository logo
  • English
  • Italiano
Log In
Have you forgotten your password?
  1. Home
  2. PRODOTTI RICERCA INAF
  3. 1 CONTRIBUTI IN RIVISTE (Journal articles)
  4. 1.01 Articoli in rivista
  5. A nearby galaxy perspective on dust evolution. Scaling relations and constraints on the dust build-up in galaxies with the DustPedia and DGS samples
 

A nearby galaxy perspective on dust evolution. Scaling relations and constraints on the dust build-up in galaxies with the DustPedia and DGS samples

Journal
ASTRONOMY & ASTROPHYSICS  
Date Issued
2021
Author(s)
Galliano, Frédéric
•
Nersesian, Angelos
•
BIANCHI, SIMONE  
•
De Looze, Ilse
•
Roychowdhury, Sambit
•
Baes, Maarten
•
CASASOLA, VIVIANA  
•
Cassará, Letizia P.
•
Dobbels, Wouter
•
Fritz, Jacopo
•
Galametz, Maud
•
Jones, Anthony P.
•
Madden, Suzanne C.
•
Mosenkov, Aleksandr
•
Xilouris, Emmanuel M.
•
Ysard, Nathalie
DOI
10.1051/0004-6361/202039701
Abstract
Context. The efficiency of the different processes responsible for the evolution of interstellar dust on the scale of a galaxy are, to date, very uncertain, spanning several orders of magnitude in the literature. Yet, precise knowledge of the grain properties is key to addressing numerous open questions about the physics of the interstellar medium and galaxy evolution.
Aims: This article presents an empirical statistical study, aimed at quantifying the timescales of the main cosmic dust evolution processes as a function of the global properties of a galaxy.
Methods: We modeled a sample of ≃800 nearby galaxies, spanning a wide range of metallicities, gas fractions, specific star formation rates, and Hubble stages. We derived the dust properties of each object from its spectral energy distribution. Through an additional level of analysis, we inferred the timescales of dust condensation in core-collapse supernova ejecta, grain growth in cold clouds, and dust destruction by shock waves. Throughout this paper, we have adopted a hierarchical Bayesian approach, resulting in a single large probability distribution of all the parameters of all the galaxies, to ensure the most rigorous interpretation of our data.
Results: We confirm the drastic evolution with metallicity of the dust-to-metal mass ratio (by two orders of magnitude), found by previous studies. We show that dust production by core-collapse supernovae is efficient only at very low metallicity, a single supernova producing on average less than ≃0.03 M⊙/SN of dust. Our data indicate that grain growth is the dominant formation mechanism at metallicity above ≃1/5 solar, with a grain growth timescale shorter than ≃50 Myr at solar metallicity. Shock destruction is relatively efficient, a single supernova clearing dust on average in at least ≃1200 M⊙/SN of gas. These results are robust when assuming different stellar initial mass functions. In addition, we show that early-type galaxies are outliers in several scaling relations. This feature could result from grain thermal sputtering in hot X-ray emitting gas, which is a hypothesis supported by a negative correlation between the dust-to-stellar mass ratio and the X-ray photon rate per grain. Finally, we confirm the well-known evolution of the aromatic-feature-emitting grain mass fraction as a function of metallicity and interstellar radiation field intensity. Our data indicate that the relation with metallicity is significantly stronger.
Conclusions: Our results provide valuable constraints for simulations of galaxies. They imply that grain growth is the likely dust production mechanism in dusty high-redshift objects. We also emphasize the determinant role of local, low metallicity systems in order to address these questions.

Table H.1 is only available at the CDS via anonymous ftp to cdsarc.u-strasbg.fr (ftp://130.79.128.5) or via http://cdsarc.u-strasbg.fr/viz-bin/cat/J/A+A/649/A18

DustPedia is a collaborative focused research project supported by the European Union under the Seventh Framework Programme (2007- 2013) call (proposal no. 606847, PI J. I. Davies). The data used in this work are publicly available at http://dustpedia.astro.noa.gr

Volume
649
Start page
A18
Uri
http://hdl.handle.net/20.500.12386/31987
Url
http://arxiv.org/abs/2101.00456v1
https://www.aanda.org/articles/aa/full_html/2021/05/aa39701-20/aa39701-20.html
Issn Identifier
0004-6361
Ads BibCode
2021A&A...649A..18G
Rights
open.access
File(s)
Loading...
Thumbnail Image
Name

galliano2021-41.pdf

Description
Page 41
Size

3.72 MB

Format

Adobe PDF

Checksum (MD5)

b4159594b37127f5b85ae2ed9026c9a5

Loading...
Thumbnail Image
Name

galliano2021-10.pdf

Description
Page 10
Size

1017.71 KB

Format

Adobe PDF

Checksum (MD5)

34363c17e2861a6501cbfe4edc76a212

Explore By
  • Communities and Collection
  • Research Outputs
  • Researchers
  • Organizations
  • Projects
Information and guides for authors
  • https://openaccess-info.inaf.it: all about open access in INAF
  • How to enter a product: guides to OA@INAF
  • The INAF Policy on Open Access
  • Downloadable documents and templates

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Privacy policy
  • End User Agreement
  • Send Feedback