International audienceContext. Cosmic rays play an important role in dense molecular cores, affecting their thermal and dynamical evolution and initiating the chemistry. Several studies have shown that the formation of protostellar discs in collapsing clouds is severely hampered by the braking torque exerted by the entrained magnetic field on the infalling gas, as long as the field remains frozen to the gas.Aims. In this paper we examine the possibility that the concentration and twisting of the field lines in the inner region of collapse can produce a significant reduction of the ionisation fraction.Methods. To check whether the cosmic-ray ionisation rate can fall below the cri...
Context. Whether or not magnetic fields play a key role in dynamically shaping the products of the s...
We demonstrate the formation of gravitationally unstable discs in magnetized molecular cloud cores w...
[Context] Whether or not magnetic fields play a key role in dynamically shaping the products of the ...
International audienceContext. Cosmic rays play an important role in dense molecular cores, ...
International audienceContext. The formation of protostellar discs is severely hampered by magnetic ...
Context. Low-energy cosmic rays are the dominant source of ionization for molecular cloud cores. The...
Abstract. Cosmic rays are the main agents in controlling the chemical evolution and setting the ambi...
We present results from radiation non-ideal magnetohydrodynamics (MHD) calculations that follow the ...
International audienceCosmic rays are usually assumed to be the main ionization agent for the interi...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
We study the combined impact of magnetic mirroring and focusing on the ionization by cosmic rays (CR...
Context. Whether or not magnetic fields play a key role in dynamically shaping the products of the s...
We demonstrate the formation of gravitationally unstable discs in magnetized molecular cloud cores w...
[Context] Whether or not magnetic fields play a key role in dynamically shaping the products of the ...
International audienceContext. Cosmic rays play an important role in dense molecular cores, ...
International audienceContext. The formation of protostellar discs is severely hampered by magnetic ...
Context. Low-energy cosmic rays are the dominant source of ionization for molecular cloud cores. The...
Abstract. Cosmic rays are the main agents in controlling the chemical evolution and setting the ambi...
We present results from radiation non-ideal magnetohydrodynamics (MHD) calculations that follow the ...
International audienceCosmic rays are usually assumed to be the main ionization agent for the interi...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
We study the combined impact of magnetic mirroring and focusing on the ionization by cosmic rays (CR...
Context. Whether or not magnetic fields play a key role in dynamically shaping the products of the s...
We demonstrate the formation of gravitationally unstable discs in magnetized molecular cloud cores w...
[Context] Whether or not magnetic fields play a key role in dynamically shaping the products of the ...