International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE) is strongly affected by internal stellar feedback processes. In this paper, we determine how sensitive the SFE of molecular clouds is to randomized inputs in the star formation feedback loop, and to what extent relationships between emergent cloud properties and the SFE can be recovered. We introduce the YULE suite of 26 radiative magnetohydrodynamic simulations of a 10 000 solar mass cloud similar to those in the solar neighbourhood. We use the same initial global properties in every simulation but vary the initial mass function sampling and initial cloud velocity structure. The final SFE lies between 6 and 23 per cent when either of these...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigated the effect of photoionizing feedback inside turbulent star-forming clouds, comparing...
We investigate how star formation efficiency can be significantly decreased by the removal of a mole...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
Molecular clouds are turbulent structures whose star formation efficiency (SFE) is strongly affected...
Molecular clouds are turbulent structures whose star formation efficiency (SFE) is strongly affected...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
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...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the removal of interstellar material by stellar feedback limits the efficiency of...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigated the effect of photoionizing feedback inside turbulent star-forming clouds, comparing...
We investigate how star formation efficiency can be significantly decreased by the removal of a mole...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
International audienceMolecular clouds are turbulent structures whose star formation efficiency (SFE...
Molecular clouds are turbulent structures whose star formation efficiency (SFE) is strongly affected...
Molecular clouds are turbulent structures whose star formation efficiency (SFE) is strongly affected...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
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...
We investigate how the dynamical state of a turbulently supported, 1000 M-circle dot, molecular clou...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the removal of interstellar material by stellar feedback limits the efficiency of...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigate how the dynamical state of a turbulently supported, 1000 M⊙, molecular cloud affects ...
We investigated the effect of photoionizing feedback inside turbulent star-forming clouds, comparing...
We investigate how star formation efficiency can be significantly decreased by the removal of a mole...