Direct observational measurements of the magnetic field strength in prestellar cores typically find supercritical mass-to-flux ratios, suggesting that the magnetic field is insufficient to prevent gravitational collapse. These measurements suffer from significant uncertainties; an alternative approach is to utilize the sensitivity of prestellar chemistry to the evolutionary history, and indirectly constrain the degree of magnetic support. We combine non-ideal magnetohydrodynamic simulations of prestellar cores with time-dependent chemistry and radiative transfer modelling, producing synthetic observations of the model cores in several commonly-observed molecular lines. We find that molecules strongly affected by freeze-out, such as CS and H...
Context.To understand the star formation process, it is important to study the collapse of a preste...
[[abstract]]A scenario for star formation is described based on the assumption that magnetic fields ...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
FDP is supported by the Science and Technology Facilities Council.Direct observational measurements ...
Determining the importance of magnetic fields in star-forming environments is hampered by the diffic...
We investigate differences in the molecular abundances between magnetically super- and subcritical p...
The first hydrostatic core, also called the first Larson core, is one of the first steps in low-mass...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
Sun-like stars form from the contraction of cold and dense interstellar clouds. How the collapse pro...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
We deploy and demonstrate the capabilities of the magnetic field model developed by Ewertowski & Bas...
We investigate the formation of stars within giant molecular clouds (GMCs) evolving in environments ...
We formulate the problem of the formation and collapse of nonaxisymmetric protostellar cores in weak...
Context.To understand the star formation process, it is important to study the collapse of a preste...
[[abstract]]A scenario for star formation is described based on the assumption that magnetic fields ...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...
FDP is supported by the Science and Technology Facilities Council.Direct observational measurements ...
Determining the importance of magnetic fields in star-forming environments is hampered by the diffic...
We investigate differences in the molecular abundances between magnetically super- and subcritical p...
The first hydrostatic core, also called the first Larson core, is one of the first steps in low-mass...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
Sun-like stars form from the contraction of cold and dense interstellar clouds. How the collapse pro...
We review the properties of low mass dense molecular cloud cores, including starless, prestellar, an...
We deploy and demonstrate the capabilities of the magnetic field model developed by Ewertowski & Bas...
We investigate the formation of stars within giant molecular clouds (GMCs) evolving in environments ...
We formulate the problem of the formation and collapse of nonaxisymmetric protostellar cores in weak...
Context.To understand the star formation process, it is important to study the collapse of a preste...
[[abstract]]A scenario for star formation is described based on the assumption that magnetic fields ...
International audienceContext. A solar-type system starts from an initial molecular core that acquir...