Dust growth via accretion of gas species has been proposed as the dominant process to increase the amount of dust in galaxies. We show here that this hypothesis encounters severe difficulties that make it unfit to explain the observed UV and IR properties of such systems, particularly at high redshifts. Dust growth in the diffuse ISM phases is hampered by (a) too slow accretion rates, (b) too high dust temperatures, and (c) the Coulomb barrier that effectively blocks accretion. In molecular clouds these problems are largely alleviated. Grains are cold (but not colder than the CMB temperature, TCMB ≈ 20 K at redshift z = 6). However, in dense environments accreted materials form icy water mantles, perhaps with impurities. Mantles are immedia...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
Dust growth via accretion of gas species has been proposed as the dominant process to increase the a...
The recent discovery of high-redshift dusty galaxies implies a rapid dust enrichment of their inters...
The evolution of dust at redshifts z ≳ 9, and consequently the dust properties, differs greatly from...
The evolution of dust at redshifts z ≳ 9, and consequently the dust properties, differs greatly from...
The evolution of dust at redshifts z > or approx. 9, and consequently the dust properties, differs g...
The evolution of dust at redshifts z > or approx. 9, and consequently the dust properties, differs g...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
International audienceDust growth via accretion of gas species has been proposed as the dominant pro...
Dust growth via accretion of gas species has been proposed as the dominant process to increase the a...
The recent discovery of high-redshift dusty galaxies implies a rapid dust enrichment of their inters...
The evolution of dust at redshifts z ≳ 9, and consequently the dust properties, differs greatly from...
The evolution of dust at redshifts z ≳ 9, and consequently the dust properties, differs greatly from...
The evolution of dust at redshifts z > or approx. 9, and consequently the dust properties, differs g...
The evolution of dust at redshifts z > or approx. 9, and consequently the dust properties, differs g...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We apply a chemical evolution model to investigate the sources and evolution of dust in a sample of ...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...