We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds) on the evolution of a Giant Molecular Cloud (GMC), by means of a 3D radiative transfer, hydrosimulation implementing a complex chemical network featuring H2 formation and destruction. We track the formation of individual stars with mass M>1M⊙ with a stochastic recipe. Each star emits radiation according to its spectrum, sampled with 10 photon bins from near-infrared to extreme ultraviolet bands; winds are implemented by energy injection in the neighbouring cells. We run a simulation of a GMC with mass M=105M⊙, following the evolution of different gas phases. Thanks to the simultaneous inclusion of different stellar feedback mechanisms, ...
We model the combined effects of photoionization and momentum-driven winds from O-stars on molecular...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure and winds)...
The role of feedback from massive stars is believed to be a key element in the evolu-tion of molecul...
The lifetime of a Giant Molecular Cloud (GMC) and the total mass of stars that form within it are cr...
The lifetime of a Giant Molecular Cloud (GMC) and the total mass of stars that form within it are cr...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
As part of the SILCC-Zoom project, we present our first sub-parsec resolution radiation hydrodynamic...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
We model the combined effects of photoionization and momentum-driven winds from O-stars on molecular...
We model the combined effects of photoionization and momentum-driven winds from O-stars on molecular...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure, and winds...
We study the effect of stellar feedback (photodissociation/ionization, radiation pressure and winds)...
The role of feedback from massive stars is believed to be a key element in the evolu-tion of molecul...
The lifetime of a Giant Molecular Cloud (GMC) and the total mass of stars that form within it are cr...
The lifetime of a Giant Molecular Cloud (GMC) and the total mass of stars that form within it are cr...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
As part of the SILCC-Zoom project, we present our first sub-parsec resolution radiation hydrodynamic...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
International audienceMolecular cloud structure is regulated by stellar feedback in various forms. T...
We model the combined effects of photoionization and momentum-driven winds from O-stars on molecular...
We model the combined effects of photoionization and momentum-driven winds from O-stars on molecular...
It is a major open question which physical processes stop gas accretion on to giant molecular clouds...
International audienceMost stars in the Galaxy are believed to be formed within star clusters from c...