Two of the dominant channels for galaxy mass assembly are cold flows (cold gas supplied via the filaments of the cosmic web) and mergers. How these processes combine in a cosmological setting, at both low and high redshift, to produce the whole zoo of galaxies we observe is largely unknown. Indeed there is still much to understand about the detailed physics of each process in isolation. While these formation channels have been studied using hydrodynamical simulations, here we study their impact on gas properties and star formation (SF) with some of the first from simulations that capture the multiphase, cloudy nature of the interstellar medium (ISM), by virtue of their high spatial resolution (and corresponding low temperature threshold). I...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
International audienceWe investigate the intensity enhancement and the duration of starburst episode...
LetterInternational audienceMassive galaxies in the young Universe, ten billion years ago, formed st...
Two of the dominant channels for galaxy mass assembly are cold flows (cold gas supplied via the fila...
The quest for a better understanding of the evolution of massive galaxies can be broadly summarised ...
International audienceContext. In Λ-CDM models, galaxies are thought to grow both through continuous...
Context. In Λ-CDM models, galaxies are thought to grow both through continuous cold gas accretion co...
We use hydrodynamic simulations with detailed, explicit models for stellar feedback to study galaxy ...
Galaxy mergers are believed to trigger strong starbursts. This is well assessed by observations in t...
We study galaxy super-winds driven in major mergers, using pc-scale resolution simulations with deta...
The interstellar medium (ISM) in galaxies is multiphase and cloudy, with stars forming in the very d...
Mergers are known to be essential in the formation of large scale structures and to have a significa...
This lecture reviews fundamental physical processes on star formation in galaxy interactions and mer...
Utilizing a high-resolution (114h−1pc) adaptive mesh-refinement cosmological galaxy formation simula...
We explore the evolution of the cold gas (molecular and neutral hydrogen) and the star-formation act...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
International audienceWe investigate the intensity enhancement and the duration of starburst episode...
LetterInternational audienceMassive galaxies in the young Universe, ten billion years ago, formed st...
Two of the dominant channels for galaxy mass assembly are cold flows (cold gas supplied via the fila...
The quest for a better understanding of the evolution of massive galaxies can be broadly summarised ...
International audienceContext. In Λ-CDM models, galaxies are thought to grow both through continuous...
Context. In Λ-CDM models, galaxies are thought to grow both through continuous cold gas accretion co...
We use hydrodynamic simulations with detailed, explicit models for stellar feedback to study galaxy ...
Galaxy mergers are believed to trigger strong starbursts. This is well assessed by observations in t...
We study galaxy super-winds driven in major mergers, using pc-scale resolution simulations with deta...
The interstellar medium (ISM) in galaxies is multiphase and cloudy, with stars forming in the very d...
Mergers are known to be essential in the formation of large scale structures and to have a significa...
This lecture reviews fundamental physical processes on star formation in galaxy interactions and mer...
Utilizing a high-resolution (114h−1pc) adaptive mesh-refinement cosmological galaxy formation simula...
We explore the evolution of the cold gas (molecular and neutral hydrogen) and the star-formation act...
We present a hydrodynamical simulation at sub-parsec and few-solar-mass resolution of a merger betwe...
International audienceWe investigate the intensity enhancement and the duration of starburst episode...
LetterInternational audienceMassive galaxies in the young Universe, ten billion years ago, formed st...