

Author: Blanco Cárdenas M. W. Käufl H. U. Guerrero M. A. Miranda L. F. Seifahrt A.
Publisher: Edp Sciences
E-ISSN: 1432-0746|566|issue|A133-A133
ISSN: 0004-6361
Source: Astronomy & Astrophysics, Vol.566, Iss.issue, 2014-06, pp. : A133-A133
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Abstract
The onset of asymmetry in planetary nebulae (PNe) occurs during the short transition between the end of the asymptotic giant branch (AGB) phase and the beginning of the PN phase. Sources in this transition phase are compact and emit intensely in infrared wavelengths, making high spatial resolution observations in the infrared mandatory to investigate the shaping process of PNe. Interferometric VLTI IR observations have revealed compelling evidence of disks at the cores of PNe, but the limited sensitivity, strong observational constraints, and limited spatial coverage place severe limits on a universal use of this technique. Inspired by the successful detection of proto-planetary disks using spectro-astrometric observations, we apply this technique here for the first time to search for subarcsecond structures in PNe. Our exploratory study using CRyogenic high-resolution Infra-Red Echelle Spectrograph (CRIRES) commissioning data of the proto-PN IRAS 17516
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