A wide-angle outflow with the simultaneous presence of a high-velocity jet in the high-mass Cepheus A HW2 system

Широкоугольный отток с одновременным присутствием высокоскоростной струи в системе массивной звезды Цефея A HW2
J. M. Torrelles, Nimesh Patel, S. Curiel, R. Estalella, José F. Gómez, Luis F. Rodrı́guez, J. Cantó, Guillem Anglada, W. H. T. Vlemmings, Guido Garay, A. C. Raga, Paul T. P. Ho
2010-09-29

Cepheus A HW2high-velocity radio jetmassive protostarwater maser VLBIwide-angle outflow
We present five epochs of VLBI water maser observations around the massive protostar Cepheus A HW2 with 0.4 mas (0.3 au) resolution. The main goal of these observations was to follow the evolution of the remarkable water maser linear/arcuate structures found in earlier VLBI observations. Comparing the data of our new epochs of observation with those observed 5 yr before, we find that at ‘large’ scales of >rsim1 arcsec (700 au) the main regions of maser emission persist, implying that both the surrounding medium and the exciting sources of the masers have been relatively stable during that time-span. However, at smaller scales of ≲0.1 arcsec (70 au) we see large changes in the maser structures, particularly in the expanding arcuate structures R4 and R5. R4 traces a nearly elliptical patchy ring of ∼70 mas size (50 au) with expanding motions of ∼5 mas yr−1 (15 km s−1), consistent with previous results of Gallimore and collaborators. This structure is probably driven by the wind of a still unidentified YSO located at the centre of the ring (∼0.18 arcsec south of HW2). On the other hand, the R5 expanding bubble structure (driven by the wind of a previously identified YSO located ∼0.6 arcsec south of HW2) is currently dissipating in the circumstellar medium and losing its previous degree of symmetry, indicating a very short lived event. In addition, our results reveal, at scales of ∼1 arcsec (700 au), the simultaneous presence of a relatively slow (∼10–70 km s−1) wide-angle outflow (opening angle of ∼102°), traced by the masers, and the fast (∼500 km s−1) highly collimated radio jet associated with HW2 (opening angle of ∼18°), previously observed with the VLA. This simultaneous presence of a wide-angle outflow and a highly collimated jet associated with a massive protostar is similar to what is found in some low-mass YSOs. There are indications that the primary wind(s) from HW2 could be rotating. The implications of these results in the study of the formation of high-mass stars are discussed.
1
Five-epoch VLBI observations resolved Cepheus A HW2 water masers at 0.4 mas (0.3 au), revealing stable large-scale emission regions over five years.
2
Maser structures at scales below 0.1 arcsec (70 au) changed substantially, especially the expanding arcuate structures R4 and R5.
3
R4 forms a roughly 50-au patchy elliptical ring expanding at approximately 15 km s−1, likely driven by an unidentified YSO south of HW2.
4
The R5 bubble is dissipating and becoming asymmetric, indicating that the associated wind-driven event is likely very short-lived.
5
The system simultaneously hosts a slow, approximately 10–70 km s−1 wide-angle outflow and a fast, approximately 500 km s−1 highly collimated jet from HW2.
6
The wide-angle outflow has an opening angle of approximately 102°, whereas the radio jet has an opening angle of approximately 18°; the primary HW2 wind may be rotating.

The Cepheus A HW2 high-mass protostellar system, including its water-maser-emitting outflows, expanding structures, and associated radio jet

The morphology, kinematics, evolution, and coexistence of the slow wide-angle outflow and fast highly collimated jet

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Publication Date
2010-09-29
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Authors
J. M. Torrelles
Nimesh Patel
S. Curiel
R. Estalella
José F. Gómez
Luis F. Rodrı́guez
J. Cantó
Guillem Anglada
W. H. T. Vlemmings
Guido Garay
A. C. Raga
Paul T. P. Ho
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