The collapse of slowly rotating molecular cloud cores threaded by magnetic fields is investigated by high-resolution numerical simulation. Outflow formation in the collapsing cloud cores is also followed. In the models examined, the cloud core and parent cloud rotate rigidly and are initially threaded by a uniform magnetic field. The simulations show that the cloud core collapses along the magnetic field lines. The magnetic field in the dense region of the cloud core rotates faster than that of the parent cloud as a consequence of spin-up of the central region during the collapse. The cloud core exhibits significant precession of the rotation axis, magnetic field, and disk orientation, with precession highest in the models with low initial ...
International audienceContext. Stars, and more particularly massive stars, have a drastic impact on ...
Interstellar molecular clouds are generally believed to be the sites of active star formation in our...
We numerically model the collapse of magnetic rotating protostellar clouds with mass of 10 M The sim...
The evolution of the magnetic field and angular momentum in the collapsing cloud core is studied usi...
Molecular cloud cores, in which star formation process now proceeds, are often found with elongated ...
We present self-similar solutions that describe the gravitational collapse of rotating, isothermal, ...
Dynamical collapses of magnetized molecular cloud cores are studied with magnetohydrodynamical simul...
Context.To understand the star formation process, it is important to study the collapse of a preste...
International audienceOutflows and jets are intimately related to the formation of stars, and play a...
International audienceContext: To understand the star formation process, it is important to study th...
The role played by magnetic field during star formation is an important topic in astrophysics. We in...
The means by which parent molecular clouds give birth to stars constitutes a fundamental unsolved pr...
Context. Stars, and more particularly massive stars, have a drastic impact on galaxy evolution. Yet ...
Context. Theoretical studies of collapsing clouds have found that even a relatively weak magnetic fi...
The collapse and fragmentation of initially filamentary, magnetic molecular clouds is calculated in ...
International audienceContext. Stars, and more particularly massive stars, have a drastic impact on ...
Interstellar molecular clouds are generally believed to be the sites of active star formation in our...
We numerically model the collapse of magnetic rotating protostellar clouds with mass of 10 M The sim...
The evolution of the magnetic field and angular momentum in the collapsing cloud core is studied usi...
Molecular cloud cores, in which star formation process now proceeds, are often found with elongated ...
We present self-similar solutions that describe the gravitational collapse of rotating, isothermal, ...
Dynamical collapses of magnetized molecular cloud cores are studied with magnetohydrodynamical simul...
Context.To understand the star formation process, it is important to study the collapse of a preste...
International audienceOutflows and jets are intimately related to the formation of stars, and play a...
International audienceContext: To understand the star formation process, it is important to study th...
The role played by magnetic field during star formation is an important topic in astrophysics. We in...
The means by which parent molecular clouds give birth to stars constitutes a fundamental unsolved pr...
Context. Stars, and more particularly massive stars, have a drastic impact on galaxy evolution. Yet ...
Context. Theoretical studies of collapsing clouds have found that even a relatively weak magnetic fi...
The collapse and fragmentation of initially filamentary, magnetic molecular clouds is calculated in ...
International audienceContext. Stars, and more particularly massive stars, have a drastic impact on ...
Interstellar molecular clouds are generally believed to be the sites of active star formation in our...
We numerically model the collapse of magnetic rotating protostellar clouds with mass of 10 M The sim...