The interstellar abundances of refractory elements indicate a substantial depletion from the gas phase, which increases with gas density. Our recent model of dust evolution, based on hydrodynamic simulations of the life cycle of giant molecular clouds (GMCs), proves that the observed trend for [Sigas/H] is driven by a combination of dust growth by accretion in the cold diffuse interstellar medium (ISM) and efficient destruction by supernova (SN) shocks. With an analytic model of dust evolution, we demonstrate that even with optimistic assumptions for the dust input from stars and without destruction of grains by SNe it is impossible to match the observed [Sigas/H]-n H relation without growth in the ISM. We extend the framework developed in ...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Silicates are an important component of interstellar dust that has been poorly investigated in high ...
This is the final version. Available from American Astronomical Society via the DOI in this recordTh...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
Metals in the interstellar medium (ISM) of essentially all types of galaxies are observed to be depl...
International audienceMetals in the interstellar medium (ISM) of essentially all types of galaxies a...
We present models for the evolution of the elemental abundances in the gas and dust phases of the in...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Silicates are an important component of interstellar dust that has been poorly investigated in high ...
This is the final version. Available from American Astronomical Society via the DOI in this recordTh...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
Metals in the interstellar medium (ISM) of essentially all types of galaxies are observed to be depl...
International audienceMetals in the interstellar medium (ISM) of essentially all types of galaxies a...
We present models for the evolution of the elemental abundances in the gas and dust phases of the in...
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, ...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Grain growth by accretion of gas-phase metals is a common assumption in models of dust evolution, bu...
Silicates are an important component of interstellar dust that has been poorly investigated in high ...