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  5. Parsec-scale jets driven by high-mass young stellar objects: Connecting the au- and the parsec-scale jet in IRAS 13481-6124
 
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Parsec-scale jets driven by high-mass young stellar objects: Connecting the au- and the parsec-scale jet in IRAS 13481-6124

Author(s)
Fedriani, Ruben  
Caratti o Garatti, Alessio  
Coffey, Deirdre  
et al.  
Uri
http://hdl.handle.net/10197/11143
Date Issued
2018-08-28
Date Available
2019-10-15T15:16:13Z
Abstract
Context. Protostellar jets in high-mass young stellar objects (HMYSOs) play a key role in the understanding of star formation and provide us with an excellent tool to study fundamental properties of HMYSOs. Aims. We aim at studying the physical and kinematic properties of the near-infrared (NIR) jet of IRAS 13481-6124 from au to parsec scales. Methods. Our study includes NIR data from the Very Large Telescope instruments SINFONI, CRIRES, and ISAAC. Information about the source and its immediate environment is retrieved with SINFONI. The technique of spectro-astrometry is performed with CRIRES to study the jet on au scales. The parsec-scale jet and its kinematic and dynamic properties are investigated using ISAAC. Results. The SINFONI spectra in H and K bands are rich in emission lines that are mainly associated with ejection and accretion processes. Spectro-astrometry is applied to the Brγ line, and for the first time, to the Brα line, revealing their jet origin with milliarcsecond-scale photocentre displacements (11-15 au). This allows us to constrain the kinematics of the au-scale jet and to derive its position angle (~216°). ISAAC spectroscopy reveals H2 emission along the parsec-scale jet, which allows us to infer kinematic and dynamic properties of the NIR parsec-scale jet. The mass-loss rate inferred for the NIR jet is Mejec ~ 10-4 M⊙ yr-1 and the thrust is P ~ 10-2 M⊙ yr-1 km s-1, which is roughly constant for the formation history of the young star. A tentative estimate of the ionisation fraction is derived for the massive jet by comparing the radio and NIR mass-loss rates. An ionisation fraction 8% is obtained, which means that the bulk of the ejecta is traced by the NIR jet and that the radio jet only delineates a small portion of it.
Sponsorship
European Commission Horizon 2020
European Research Council
Science Foundation Ireland
Other Sponsorship
STFC Rutherford Fellowship
European Research Council
Type of Material
Journal Article
Publisher
EDP Sciences
Journal
Astronomy and Astrophysics
Volume
616
Copyright (Published Version)
2018 ESO
Subjects

Interstellar medium

Stars

IRAS 13481-6124

Spectroscopic

DOI
10.1051/0004-6361/201732180
Language
English
Status of Item
Peer reviewed
ISSN
0004-6361
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
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aa32180-17.pdf

Size

2.59 MB

Format

Adobe PDF

Checksum (MD5)

5daa32427442af3b5491e5e4878076ab

Owning collection
Physics Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
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