We implement a detailed dust model into the L-Galaxies semi-analytical model which includes: injection of dust by type II and type Ia supernovae (SNe) and AGB stars; grain growth in molecular clouds; and destruction due to supernova-induced shocks, star formation, and reheating. Our grain growth model follows the dust content in molecular clouds and the inter-cloud medium separately, and allows growth only on pre-existing dust grains. At early times, this can make a significant difference to the dust growth rate. Above z ∼ 8, type II SNe are the primary source of dust, whereas below z ∼ 8, grain growth in molecular clouds dominates, with the total dust content being dominated by the latter below z ∼ 6. However, the detailed history of galax...
KR acknowledges support from the European Research Council Starting Grant (P.I. V. Wild). HLG acknow...
We include a fully coupled treatment of metal and dust enrichment into the DELPHI semi-analytic mode...
We include a fully coupled treatment of metal and dust enrichment into the DELPHI semi-analytic mode...
We implement a detailed dust model into the L-Galaxies semi-analytical model which includes: injecti...
Scaling laws of dust, Hi gas and metal mass with stellar mass, specific star formation rate and metal...
Scaling laws of dust, Hi gas and metal mass with stellar mass, specific star formation rate and metal...
Scaling laws of dust, Hi gas and metal mass with stellar mass, specific star formation rate and metal...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code arepo and...
Scaling laws of dust, HI gas, and metal mass with stellar mass, specific star formation rate, and me...
Scaling laws of dust, HI gas, and metal mass with stellar mass, specific star formation rate, and me...
Aims. The aim is to elucidate the astrophysical conditions required for generating large a...
Aims. The aim is to elucidate the astrophysical conditions required for generating large a...
KR acknowledges support from the European Research Council Starting Grant (P.I. V. Wild). HLG acknow...
We include a fully coupled treatment of metal and dust enrichment into the DELPHI semi-analytic mode...
We include a fully coupled treatment of metal and dust enrichment into the DELPHI semi-analytic mode...
We implement a detailed dust model into the L-Galaxies semi-analytical model which includes: injecti...
Scaling laws of dust, Hi gas and metal mass with stellar mass, specific star formation rate and metal...
Scaling laws of dust, Hi gas and metal mass with stellar mass, specific star formation rate and metal...
Scaling laws of dust, Hi gas and metal mass with stellar mass, specific star formation rate and metal...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code AREPO and...
We introduce a dust model for cosmological simulations implemented in the moving-mesh code arepo and...
Scaling laws of dust, HI gas, and metal mass with stellar mass, specific star formation rate, and me...
Scaling laws of dust, HI gas, and metal mass with stellar mass, specific star formation rate, and me...
Aims. The aim is to elucidate the astrophysical conditions required for generating large a...
Aims. The aim is to elucidate the astrophysical conditions required for generating large a...
KR acknowledges support from the European Research Council Starting Grant (P.I. V. Wild). HLG acknow...
We include a fully coupled treatment of metal and dust enrichment into the DELPHI semi-analytic mode...
We include a fully coupled treatment of metal and dust enrichment into the DELPHI semi-analytic mode...