Decoupling of Magnetic Fields in Collapsing Protostellar Envelopes and Disk Formation and Fragmentation
arXiv:1706.06504 · doi:10.1093/mnras/stx2617
Abstract
Efficient magnetic braking is a formidable obstacle to the formation of rotationally supported disks (RSDs) around protostars in magnetized dense cores. We have previously shown, through 2D (axisymmetric) non-ideal MHD simulations, that removing very small grains (VSGs: ~10 Åto few 100 Å) can greatly enhance ambipolar diffusion and enable the formation of RSDs. Here we extend the simulations of disk formation enabled by VSG removal to 3D. We find that the key to this scenario of disk formation is that the drift velocity of the magnetic field almost cancels out the infall velocity of the neutrals in the - AU-scale "pseudo-disk" where the field lines are most severely pinched and most of protostellar envelope mass infall occurs. As a result, the bulk neutral envelope matter can collapse without dragging much magnetic flux into the disk-forming region, which lowers the magnetic braking efficiency. We find that the initial disks enabled by VSG removal tend to be Toomre-unstable, which leads to the formation of prominent spiral structures that function as centrifugal barriers. The piling-up of infall material near the centrifugal barrier often produces dense fragments of tens of Jupiter masses, especially in cores that are not too strongly magnetized. Some fragments accrete onto the central stellar object, producing bursts in mass accretion rate. Others are longer lived, although whether they can survive long-term to produce multiple systems remains to be ascertained. Our results highlight the importance of dust grain evolution in determining the formation and properties of protostellar disks and potentially multiple systems.
22 pages, 22 figures. Accepted by MNRAS
References in corpus (16)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- The Burst Mode of Protostellar Accretion
- Spiral Density Waves in a Young Protoplanetary Disk
- Magnetic Braking and Protostellar Disk Formation: The Ideal MHD Limit
- A Triple Protostar System Formed via Fragmentation of a Gravitationally Unstable Disk
- Magnetic Fields in Dark Cloud Cores: Arecibo OH Zeeman Observations
- Variable protostellar accretion with episodic bursts
- Radiation Magnetohydrodynamic Simulations of Protostellar Collapse: Non-Ideal Magnetohydrodynamic Effects and Early Formation of Circumstellar Disks
- Resolved images of a protostellar outflow launched by an extended disk wind
- Effects of Ohmic and ambipolar diffusion on the formation and evolution of the first cores, protostars and circumstellar discs
- Three-fluid plasmas in star formation II. Momentum transfer rate coefficients
- Disk Formation Enabled by Enhanced Resistivity
- Observations of Infalling and Rotational Motions on a 1,000-AU Scale around 17 Class 0 and 0/I Protostars: Hints of Disk Growth and Magnetic Braking?
- On the Role of Pseudodisk Warping and Reconnection in Protostellar Disk Formation in Turbulent Magnetized Cores
- The impact of non-ideal magnetohydrodynamics on binary star formation
- Spectral Structures and Their Generation Mechanisms for Solar Radio Type-I Bursts
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- Protoplanetary disk formation from the collapse of a prestellar core