International audienceTheoretical studies of collapsing clouds have found that even a relatively weak magnetic field may prevent the formation of disks and their fragmentation. However, most previous studies have been limited to cases where the magnetic field and the rotation axis of the cloud are aligned, and very few studies investigated the combined effects of magnetic field and turbulence
[[abstract]]We summarize recent work addressing the role of magnetic fields in the process of star f...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
International audienceContext. Planet-forming disks are fundamental objects that are thought to be i...
International audienceTheoretical studies of collapsing clouds have found that even a relatively wea...
Context. Theoretical studies of collapsing clouds have found that even a relatively weak magnetic fi...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
Context. Theoretical and numerical studies of star formation have shown that a magnetic field can gr...
International audienceContext: In the context of star and planet formation, understanding the format...
Angular momentum is playing a key role during the collapse of prestellar cores since it is leading t...
International audienceContext. The formation of protostellar discs is severely hampered by magnetic ...
The formation of rotationally supported protostellar disks is suppressed in ideal MHD in non-turbule...
We analyse simulations of turbulent, magnetised molecular cloud cores focusing on the formation of C...
[[abstract]]We summarize recent work addressing the role of magnetic fields in the process of star f...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
International audienceContext. Planet-forming disks are fundamental objects that are thought to be i...
International audienceTheoretical studies of collapsing clouds have found that even a relatively wea...
Context. Theoretical studies of collapsing clouds have found that even a relatively weak magnetic fi...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
Context. Theoretical and numerical studies of star formation have shown that a magnetic field can gr...
International audienceContext: In the context of star and planet formation, understanding the format...
Angular momentum is playing a key role during the collapse of prestellar cores since it is leading t...
International audienceContext. The formation of protostellar discs is severely hampered by magnetic ...
The formation of rotationally supported protostellar disks is suppressed in ideal MHD in non-turbule...
We analyse simulations of turbulent, magnetised molecular cloud cores focusing on the formation of C...
[[abstract]]We summarize recent work addressing the role of magnetic fields in the process of star f...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
International audienceContext. Planet-forming disks are fundamental objects that are thought to be i...