Young galaxies are clumpy, gas-rich, and highly turbulent. Star formation appears to occur by gravitational instabilities in galactic disks. The high dispersion makes the clumps massive and the disks thick. The star formation rate should be comparable to the gas accretion rate of the whole galaxy, because star formation is usually rapid and the gas would be depleted quickly otherwise. The empirical laws for star formation found locally hold at redshifts around 2, although the molecular gas consumption time appears to be smaller, and mergers appear to form stars with a slightly higher efficiency than the majority of disk galaxies
The physical and chemical evolution of galaxies is intimately linked to star formation, We present e...
We present a new implementation of star formation in cosmological simulations by considering star cl...
5 pages, 4 figures. ApJ Letters in pressInternational audienceWe present evidence that $bona\ fide$ ...
We investigate the evolution of star-forming gas-rich disks, using a 3D chemodynamical model includi...
We investigate the evolution of star-forming gas-rich disks, using a 3D chemodynamical model includi...
Empirical star formation laws from the last 20 years are reviewed with a comparison to simulations. ...
International audienceWe use the first systematic data sets of CO molecular line emission in z ~ 1-3...
Gas disks of spiral galaxies can be described as clumpy accretion disks without a coupling of viscos...
The conversion of gas into stars is a fundamental process in astrophysics and cosmology. Stars are k...
The present star formation rate (SFR) in the inner Galaxy is puzzling for the chemical evolution mod...
Context. Newborn stars form within the localized, high density regions of molecular clouds. The sequ...
Observations of external galaxies and of local star-forming clouds in the Milky Way have suggested a...
Stars do not form in isolation, but rather out of a hierarchical structure set by the turbulence of ...
Gas processes affecting star formation are reviewed with an emphasis on gravitational and magnetic i...
(ABBREVIATED) Understanding the formation of stars in galaxies is central to much of modern astrophy...
The physical and chemical evolution of galaxies is intimately linked to star formation, We present e...
We present a new implementation of star formation in cosmological simulations by considering star cl...
5 pages, 4 figures. ApJ Letters in pressInternational audienceWe present evidence that $bona\ fide$ ...
We investigate the evolution of star-forming gas-rich disks, using a 3D chemodynamical model includi...
We investigate the evolution of star-forming gas-rich disks, using a 3D chemodynamical model includi...
Empirical star formation laws from the last 20 years are reviewed with a comparison to simulations. ...
International audienceWe use the first systematic data sets of CO molecular line emission in z ~ 1-3...
Gas disks of spiral galaxies can be described as clumpy accretion disks without a coupling of viscos...
The conversion of gas into stars is a fundamental process in astrophysics and cosmology. Stars are k...
The present star formation rate (SFR) in the inner Galaxy is puzzling for the chemical evolution mod...
Context. Newborn stars form within the localized, high density regions of molecular clouds. The sequ...
Observations of external galaxies and of local star-forming clouds in the Milky Way have suggested a...
Stars do not form in isolation, but rather out of a hierarchical structure set by the turbulence of ...
Gas processes affecting star formation are reviewed with an emphasis on gravitational and magnetic i...
(ABBREVIATED) Understanding the formation of stars in galaxies is central to much of modern astrophy...
The physical and chemical evolution of galaxies is intimately linked to star formation, We present e...
We present a new implementation of star formation in cosmological simulations by considering star cl...
5 pages, 4 figures. ApJ Letters in pressInternational audienceWe present evidence that $bona\ fide$ ...