Energetic feedback from star clusters plays a pivotal role in shaping the dynamical evolution of giant molecular clouds (GMCs). To study the effects of stellar feedback on the star formation efficiency of the clouds and the dynamical response of embedded star clusters, we perform a suite of isolated GMC simulations with star formation and momentum feedback subgrid models using the moving-mesh hydrodynamics code AREPO. The properties of our simulated GMCs span a wide range of initial mass, radius, and velocity configurations. We find that the ratio of the final stellar mass to the total cloud mass, epsilon(int), scales strongly with the initial cloud surface density and momentum feedback strength. This correlation is explained by an analytic...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
We present the results of a numerical simulation in which star formation proceeds from an initially ...
Young massive clusters (YMCs) are recently formed astronomical objects with unusually high star form...
Abstract Energetic feedback from star clusters plays a pivotal role in shaping the d...
Abstract Energetic feedback from star clusters plays a pivotal role in shaping the d...
Energetic feedback from star clusters plays a pivotal role in shaping the dynamical evolution of gia...
Energetic feedback from star clusters plays a pivotal role in shaping the dynamical evolution of gia...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
Most stars in the Galaxy are believed to be formed within star clusters from collapsing molecular cl...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
We investigate how the removal of interstellar material by stellar feedback limits the efficiency of...
We examine the combined effects of winds and photoionizing radiation from O-type stars on embedded s...
Recent cosmological hydrodynamical simulations are able to reproduce numerous statistical properties...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
We present the results of a numerical simulation in which star formation proceeds from an initially ...
Young massive clusters (YMCs) are recently formed astronomical objects with unusually high star form...
Abstract Energetic feedback from star clusters plays a pivotal role in shaping the d...
Abstract Energetic feedback from star clusters plays a pivotal role in shaping the d...
Energetic feedback from star clusters plays a pivotal role in shaping the dynamical evolution of gia...
Energetic feedback from star clusters plays a pivotal role in shaping the dynamical evolution of gia...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
Most stars in the Galaxy are believed to be formed within star clusters from collapsing molecular cl...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
We investigate how the removal of interstellar material by stellar feedback limits the efficiency of...
We examine the combined effects of winds and photoionizing radiation from O-type stars on embedded s...
Recent cosmological hydrodynamical simulations are able to reproduce numerous statistical properties...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
We present the results of a numerical simulation in which star formation proceeds from an initially ...
Young massive clusters (YMCs) are recently formed astronomical objects with unusually high star form...