Do Water Fountain Jets Really Indicate the Onset of the Morphological Metamorphosis of Circumstellar Envelopes?
arXiv:1611.03306 · doi:10.1093/mnras/stw2931
Abstract
The small-scale bipolar jets having short dynamical ages from "water fountain (WF)" sources are regarded as an indication of the onset of circumstellar envelope morphological metamorphosis of intermediate-mass stars. Such process usually happens at the end of the asymptotic giant branch (AGB) phase. However, recent studies found that WFs could be AGB stars or even early planetary nebulae. This fact prompted the idea that WFs may not necessarily be objects at the beginning of the morphological transition process. In the present work, we show that WFs could have different envelope morphologies by studying their spectral energy distribution profiles. Some WFs have spherical envelopes that resembles usual AGB stars, while others have aspherical envelopes which are more common to post-AGB stars. The results imply that WFs may not represent the earliest stage of the morphological metamorphosis. We further argue that the dynamical age of a WF jet, which can be calculated from maser proper motions, may not be the real age of the jet. The dynamical age cannot be used to justify the moment when the envelope begins to become aspherical, nor to tell the concrete evolutionary status of the object. A WF jet could be the innermost part of a larger well-developed jet, which is not necessarily a young jet.
21 pages, 4 figures, accepted for publication in MNRAS
References in corpus (9)
- Preplanetary Nebulae: An HST Imaging Survey and a New Morphological Classification System
- H2O Maser Observations of Candidate Post-AGB Stars and Discovery of Three High-velocity Water Sources
- The spatio-kinematical structure and distance of the pre-planetary nebula IRAS 19134+2131
- ALMA view of the circumstellar environment of the post-common-envelope-evolution binary system HD101584
- VLA observations of the "water fountain" IRAS 16552-3050
- The first "water fountain" collimated outflow in a planetary nebula
- From the ashes: JVLA observations of water fountain nebula candidates show the rebirth of IRAS 18455+0448
- Maser and Infrared Studies of Oxygen-Rich Late/Post-AGB Stars and Water Fountains: Development of a New Identification Method
- A search for water maser emission toward obscured post-AGB star and planetary nebula candidates