ALMA observations of CO isotopologues towards six obscured post-AGB stars
arXiv:2501.04492 · doi:10.1051/0004-6361/202452500
Abstract
Low- and intermediate-mass stars evolve through the asymptotic giant branch (AGB), when an efficient mass-loss process removes a significant fraction of their initial mass. A substantial increase in the mass-loss rate at the end of the AGB is observed for at least some stars for unknown reasons. This creates post-AGB objects that are completely enshrouded in thick dusty envelopes and might be associated with binary interactions. We observed the line of CO, CO, and CO with the Atacama Large Millimeter / submillimeter Array (ALMA) towards six obscured post-AGB stars (four C-rich and two O-rich sources) to constrain the properties of their circumstellar envelopes, recent mass-loss histories, and initial mass of the central stars. Based on the inferred O/O isotopic ratios, we find all stars to have relatively low initial masses () contrary to suggestions in the literature of higher masses for some sources. We infer a mass for HD~187885 , which is relatively low for a carbon star. For all but one source (GLMP~950), we observe kinematic components with velocities ~km~s, which are faster than typical AGB wind expansion velocities. For most sources, these higher-velocity outflows display point-symmetric morphologies. The case of Hen~3-1475 is particularly spectacular, with the high-velocity molecular outflow interleaved with the high-velocity outflow of ionised gas observed at optical wavelengths. Based on the size of the emission regions of the slow components of the outflows, we derive typical kinematic ages associated with the CO~ emission ~years and obtain relatively high associated mass-loss rates (). The sources with known spectral types are found to have evolved faster than expected based on stellar evolutionary models.
Accepted for publication in Astronomy & Astrophysics
References in corpus (25)
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- Preplanetary Nebulae: An HST Imaging Survey and a New Morphological Classification System
- A spectroscopic atlas of post-AGB stars and planetary nebulae selected from the IRAS Point Source Catalogue
- Do most planetary nebulae derive from binaries? I Population synthesis model of the galactic planetary nebula population produced by singlestars and binaries
- (Sub)stellar companions shape the winds of evolved stars
- An evolutionary catalogue of Galactic post-AGB and related objects
- Observational Confirmation of a Link Between Common Envelope Binary Interaction and Planetary Nebula Shaping
- Identifying close binary central stars of PN with Kepler
- Carbon and oxygen isotopic ratios for nearby miras
- New light on Galactic post-asymptotic giant branch stars. I. First distance catalogue
- Minkowski's Footprint revisited. Planetary Nebula formation from a single sudden event?
- A second post-AGB nebula that contains gas in rotation and in expansion: ALMA maps of IW Car
- ALMA Observations of the Water Fountain Pre-Planetary Nebula IRAS 16342-3814: High-velocity bipolar jets and an Expanding Torus
- HST/NICMOS Imaging Polarimetry of Proto-Planetary Nebulae II: Macro-morphology of the Dust Shell Structure via Polarized Light
- The puzzle of the CNO isotope ratios in AGB carbon stars
- Keplerian disks and outflows in post-AGB stars: AC Herculis, 89 Herculis, IRAS 19125+0343, and R Scuti
- Observational identification of a sample of likely recent Common-Envelope Events
- Continuum emission around AGB stars at 1.2 mm
- Shaping the envelope of the asymptotic giant branch star W43A with a collimated fast jet
- Carbon and Oxygen Isotopic Ratios. II. Semiregular Variable M Giants
- Atmospheric molecular blobs shape up circumstellar envelopes of AGB stars
- Chemistry of nebulae around binary post-AGB stars: A molecular survey of mm-wave lines
- CO line observations of OH/IR stars in the inner Galactic Bulge: Characteristics of stars at the tip of the AGB
- A Dust-Scattering Model for M1-92: A Revised Estimate of the Mass Distribution and Inclination