The cycle of interstellar dust in galaxies of different morphological types
arXiv:0706.2197 · doi:10.1051/0004-6361:20078090
Abstract
By means of chemical evolution models for galaxies of different morphological type, we have performed a detailed study of the evolution of the cosmic dust properties in different environments: the solar neighbourhood, elliptical galaxies and dwarf irregular galaxies. Starting from the same formalism as developed by Dwek (1998), We have taken into account dust production from low and intermediate mass stars, supernovae II and Ia as well as dust destruction and dust accretion processes in a detailed model of chemical evolution for the solar vicinity. Then, by means of the same dust prescriptions but adopting different galactic models (different star formation histories and presence of galactic winds), we have extended our study to ellipticals and dwarf irregular galaxies. We have investigated how the assumption of different star formation histories affects the dust production rates, the dust depletion, the dust accretion and destruction rates. We have shown how the inclusion of the dust treatment is helpful in solving the so-called Fe discrepancy, observed in the hot gaseous halos of local ellipticals, and in reproducing the chemical abundances observed in the Lyman Break Galaxies. Finally, our new models can be very useful in future detailed spectro-photometric studies of galaxies.
20 pages, A&A, accepted. Minor changes after referee report
References in corpus (5)
- Spitzer/IRAC and ISOCAM/CVF insights on the origin of the Near to Mid-IR Galactic diffuse emission
- The Nature of Infrared Emission in the Local Group Dwarf Galaxy NGC 6822 As Revealed by Spitzer
- The Star Formation History of the Virgo early-type galaxy NGC4435: the Spitzer Mid Infrared view
- Cosmic Supernova Rates and the Hubble Sequence
- Cosmic evolution of metal densities: the enrichment of the Inter-Galactic Medium
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- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
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- Genesis and evolution of dust in galaxies in the early Universe I. Modeling dust evolution in starburst galaxies
- Galactic fountains and their connection with high and intermediate velocity clouds
- The gas, metal and dust evolution in low-metallicity local and high-redshift galaxies
- JINGLE -- IV. Dust, HI gas and metal scaling laws in the local Universe
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- Dust depletion of metals from local to distant galaxies I: Peculiar nucleosynthesis effects and grain growth in the ISM
- A new galactic chemical evolution model with dust: results for dwarf irregular galaxies and DLA systems
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- Modeling the effects of dust evolution on the SEDs of galaxies of different morphological type
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- Surrogate modelling the Baryonic Universe II: on forward modelling the colours of individual and populations of galaxies
- Galactic dust evolution with rapid dust formation in the interstellar medium due to hypersonic turbulence
- BEDE: Bayesian Estimates of Dust Evolution For Nearby Galaxies
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- Chemical evolution models: GRB host identification and cosmic dust predictions
- Star Formation and Chemical Enrichment in Protoclusters
- Investigation of dust grains by optical tweezers for space applications
- A new galaxy spectral energy distribution model consistent with the evolution of dust
- Mid-IR cosmological spectrophotometric surveys from space: Measuring AGN and star formation at the Cosmic Noon with a SPICA-like mission
- Dust Grain Growth at High Redshift: Starburst-driven CMB-Dark Supershells
- Chemical evolution of galaxies with radiation-driven dust wind
- Dust Grain Growth & Dusty Supernovae in Low-Metallicity Molecular Clouds
- Constraint on the Gas-to-Dust Ratio in Massive Star-Forming Galaxies at z~1.4
- A Bayesian chemical evolution model of the DustPedia Galaxy M74
- The ALPINE-ALMA [CII] Survey: Unveiling the baryon evolution in the ISM of star-forming galaxies
- Interstellar dust evolution in galaxies of different morphological types
- The PRIMA promise of deciphering interstellar dust evolution with observations of the nearby Universe
- Stars, gas and dust in elliptical galaxies
- The role of young and evolved stars in the heating of dust in local galaxies
- The Star Formation History of the GRB 050730 Host Galaxy