ALMA observations of the very young Class 0 protostellar system HH 211-mms: a 30-au dusty disk with a disk-wind traced by SO?
arXiv:1807.05336 · doi:10.3847/1538-4357/aad2da
Abstract
HH 211-mms is one of the youngest Class 0 protostellar systems in Perseus at ~ 235 pc away. We have mapped its central region at up to ~ 7 AU (0.03") resolution. A dusty disk is seen deeply embedded in a flattened envelope, with an intensity jump in dust continuum at ~ 350 GHz. It is nearly edge-on and is almost exactly perpendicular to the jet axis. It has a size of ~ 30 au along the major axis. It is geometrically thick, indicating that the (sub)millimeter light emitting grains have yet to settle to the midplane. Its inner part is expected to have transformed into a Keplerian rotating disk with a radius of ~ 10 au. A rotating disk atmosphere and a compact rotating bipolar outflow are detected in SO. The outflow fans out from the inner disk surfaces and is rotating in the same direction as the flattened envelope, and hence could trace a disk wind carrying away angular momentum from the inner disk. From the rotation of the disk atmosphere, the protostellar mass is estimated to be <~ 50 M_Jup. Together with results from the literature, our result favors a model where the disk radius grows linearly with the protostellar mass, as predicted by models of pre-stellar dense core evolution that asymptotes to an radial profile for both the column density and angular velocity.
20 pags, 6 figures
References in corpus (15)
- Protoplanetary Disk Structures in Ophiuchus
- Magnetic Braking and Protostellar Disk Formation: The Ideal MHD Limit
- Formation of a Keplerian disk in the infalling envelope around L1527 IRS: transformation from infalling motions to Kepler motions
- Resolved images of a protostellar outflow launched by an extended disk wind
- Signs of Early-Stage Disk Growth Revealed with ALMA
- Disk-Driven Rotating Bipolar Outflow in Orion Source I
- ALMA discovery of a rotating SO/SO flow in HH212. A possible MHD disk wind?
- Decoupling of Magnetic Fields in Collapsing Protostellar Envelopes and Disk Formation and Fragmentation
- Formation and Atmosphere of Complex Organic Molecules of the HH 212 Protostellar Disk
- Rotating molecular outflows: the young T Tauri star in CB26
- HH 212: SMA Observations of a Remarkable Protostellar Jet
- Vertical Structure of the Transition Zone from Infalling Rotating Envelope to Disk in the Class 0 Protostar, IRAS04368+2557
- A 100 au-Wide Bipolar Rotating Shell Emanating From The HH 212Protostellar Disk: A Disk Wind?
- The VLA Nascent Disk And Multiplicity Survey of Perseus Protostars (VANDAM). III. Extended Radio Emission from Protostars in Perseus
- Magnetic field structure in the Flattened Envelope and Jet in the young protostellar system HH 211
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- A Pseudodisk Threaded with a Toroidal and Pinched Poloidal Magnetic Field Morphology in the HH 211 Protostellar System
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- 25 AU Angular Resolution Observations of HH 211 with ALMA : Jet Properties and Shock Structures in SiO, CO, and SO
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- The Asymmetric Bipolar Fe II Jet and H2 Outflow of TMC1A Resolved with JWST's NIRSpec IFU
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- The HH 212 interstellar laboratory: astrochemistry as a tool to reveal protostellar disks on Solar System scales around a rising Sun
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- Linear Stability Analysis of a Magnetic Rotating Disk with Ohmic Dissipation and Ambipolar Diffusion
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- Outer rotation curve of the Galaxy with VERA IV: Astrometry of IRAS 01123+6430 and the possibility of cloud-cloud collision
- The JCMT Transient Survey: Four Year Summary of Monitoring the Submillimeter Variability of Protostars
- Star formation in cloud cores -- simulations and observations of dense molecular cores and the formation of solar mass stars