4.6 Article

Averting the magnetic braking catastrophe on small scales: disk formation due to Ohmic dissipation

Journal

ASTRONOMY & ASTROPHYSICS
Volume 521, Issue -, Pages -

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201015700

Keywords

magnetohydrodynamics (MHD); protoplanetary disks; stars: formation; stars: magnetic field

Funding

  1. NSERC Alexander Graham Bell Canada
  2. NSERC

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We perform axisymmetric resistive MHD calculations that demonstrate that centrifugal disks can indeed form around Class 0 objects despite magnetic braking. We follow the evolution of a prestellar core all the way to near-stellar densities and stellar radii. Under flux-freezing, the core is braked and disk formation is inhibited, while Ohmic dissipation renders magnetic braking ineffective within the first core. In agreement with observations that do not show evidence for large disks around Class 0 objects, the resultant disk forms in close proximity to the second core and has a radius of only approximate to 10 R-circle dot early on. Disk formation does not require enhanced resistivity. We speculate that the disks can grow to the sizes observed around Class II stars over time under the influence of both Ohmic dissipation and ambipolar diffusion, as well as internal angular momentum redistribution.

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