IRAS 15398-3359 polarization maps Virtual Observatory Resource

Authors
  1. Redaelli E.
  2. Alves F.O.
  3. Santos F.P.
  4. Caselli P.
  5. Published by
    CDS
Abstract

Magnetic fields can significantly affect the star formation process. The theory of the magnetically driven collapse in a uniform field predicts that the contraction initially happens along the field lines. When the gravitational pull grows strong enough, the magnetic field lines pinch inwards, giving rise to a characteristic hourglass shape. We investigate the magnetic field structure of a young Class 0 object, IRAS 15398-3359, embedded in the Lupus I cloud. Previous observations at large scales have suggested that this source evolved in an highly magnetised environment. This object thus appears to be an ideal candidate to study the magnetically driven core collapse in the low-mass regime. We performed polarisation observations of IRAS 15398-3359 at 214um using the SOFIA telescope, thus tracing the linearly polarised thermal emission of cold dust. Our data unveil a significant bend of the magnetic field lines from the gravitational pull. The magnetic field appears ordered and aligned with the large-scale B-field of the cloud and with the outflow direction. We estimate a magnetic field strength of B=78uG, which is expected to be accurate within a factor of two. The measured mass-to-flux parameter is {lambda}=0.95, indicating that the core is in a transcritical regime.

Keywords
  1. infrared-sources
  2. magnetic-fields
  3. polarimetry
Bibliographic source Bibcode
2019A&A...631A.154R
See also HTML
https://cdsarc.cds.unistra.fr/viz-bin/cat/J/A+A/631/A154
IVOA Identifier IVOID
ivo://CDS.VizieR/J/A+A/631/A154
Document Object Identifer DOI
doi:10.26093/cds/vizier.36310154

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History

2019-11-13T06:48:19Z
Resource record created
2019-11-13T05:50:14Z
Updated
2019-11-13T06:48:19Z
Created

Contact

Name
CDS support team
Postal Address
CDS, Observatoire de Strasbourg, 11 rue de l'Universite, F-67000 Strasbourg, France
E-Mail
cds-question@unistra.fr