DHF and IAB gratefully acknowledge support from the ECOGAL project, grant agreement 291227, funded by the European Research Council under ER-2011-ADG. DJP gratefully acknowledges funding via grants DP130102078 and FT130100034 and via Future Fellowship FT130100034 from the Australian Research Council.We investigate the role of magnetic fields in the fragmentation of self-gravitating discs using 3D global ideal magnetohydrodynamic simulations performed with the PHANTOM smoothed particle hydrodynamics code. For initially toroidal fields, we find two regimes. In the first, where the cooling time is greater than five times the dynamical time, magnetic fields reduce spiral density wave amplitudes, which in turn suppresses fragmentation. This is t...
We investigate the fragmentation criterion in massive self-gravitating discs. We present new analysi...
We present results from the first radiation non-ideal magnetohydrodynamics (MHD) simulations of low-...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
We investigate the role of magnetic fields in the fragmentation of self-gravitating discs using 3D g...
We investigate the formation and fragmentation of discs using a suite of 3D smoothed particle radiat...
This is the author accepted manuscript. The final version is available from OUP via the DOI in this ...
The issue of fragmentation in self-gravitating gaseous accretion discs has implications both for the...
We have performed magnetohydrodynamic (MHD) simulations of the collapse and fragmentation of molecul...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
This is the data created for Wurster & Bate (2019): Disc formation and fragmentation using radiative...
Massive disk fragmentation has been suggested to be one of the mechanisms leading to the formation ...
In this paper, we use high-resolution smoothed particle hydrodynamics (SPH) simulations to investiga...
My dissertation focuses on the effect of magnetic fields on disk and core evolution during star-form...
Stimulated by recent results by Meru & Bate, we revisit the issue of resolution requirements for sim...
DHF gratefully acknowledges support from the ECOGAL project, grant agreement 291227, funded by the E...
We investigate the fragmentation criterion in massive self-gravitating discs. We present new analysi...
We present results from the first radiation non-ideal magnetohydrodynamics (MHD) simulations of low-...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...
We investigate the role of magnetic fields in the fragmentation of self-gravitating discs using 3D g...
We investigate the formation and fragmentation of discs using a suite of 3D smoothed particle radiat...
This is the author accepted manuscript. The final version is available from OUP via the DOI in this ...
The issue of fragmentation in self-gravitating gaseous accretion discs has implications both for the...
We have performed magnetohydrodynamic (MHD) simulations of the collapse and fragmentation of molecul...
I have carried out three-dimensional numerical simulations of self-gravitating discs to determine un...
This is the data created for Wurster & Bate (2019): Disc formation and fragmentation using radiative...
Massive disk fragmentation has been suggested to be one of the mechanisms leading to the formation ...
In this paper, we use high-resolution smoothed particle hydrodynamics (SPH) simulations to investiga...
My dissertation focuses on the effect of magnetic fields on disk and core evolution during star-form...
Stimulated by recent results by Meru & Bate, we revisit the issue of resolution requirements for sim...
DHF gratefully acknowledges support from the ECOGAL project, grant agreement 291227, funded by the E...
We investigate the fragmentation criterion in massive self-gravitating discs. We present new analysi...
We present results from the first radiation non-ideal magnetohydrodynamics (MHD) simulations of low-...
The formation of a protostellar disc is a natural outcome during the star formation process. As gas ...