The binary and the disk: the beauty is found within NGC3132 with JWST
arXiv:2211.16741 · doi:10.3847/1538-4357/aca7ba
Abstract
The planetary nebula (PN) NGC3132 is a striking example of the dramatic but poorly understood, mass-loss phenomena that (1-8) Msun stars undergo during their death throes as they evolve into white dwarfs (WDs). From an analysis of JWST multiwavelength (0.9-18 micron) imaging of NGC3132, we report the discovery of an asymmetrical dust cloud around the WD central star (CS) of NGC3132, seen most prominently in the 18 micron~image, with a surface-brightness limited radial extent of >~2 arcsec. We show that the A2V star located 1.7 arcsec to CS's North-East (and 0.75 kpc from Earth) is gravitationally-bound to the latter, by the detection of relative orbital angular motion of (0.24+/-0.045) deg between these stars over ~20 yr. Using aperture photometry of the CS extracted from the JWST images, together with published optical photometry and an archival UV spectrum, we have constructed the spectral-energy distribution (SED) of the CS and its extended emission over the UV to mid-IR (0.091-18 micron) range. We find that fitting the SED of the CS and the radial intensity distributions at 7.7, 12.8 and 18 micron with thermal emission from dust requires a cloud that extends to a radius of >~1785 au, with a dust mass of ~1.3 x 10^(-2) M(Earth) and grains that are 70% silicate and 30% amorphous carbon. We propose plausible origins of the dust cloud and an evolutionary scenario in which a system of three stars -- the CS, a close low-mass companion, and a more distant A2V star -- forms a stable hierarchical triple system on the main-sequence but becomes dynamically unstable later, resulting in the spectacular mass-ejections that form the current, multipolar PN.
23 pages, 5 tables, 8 figures (ApJ, in press) references added, minor revision of Fig 5 caption, minor typos corrected
References in corpus (20)
- The Near-Infrared Spectrograph (NIRSpec) on the James Webb Space Telescope I. Overview of the instrument and its capabilities
- The JWST Early Release Observations
- Keplerian discs around post-AGB stars: a common phenomenon?
- A Giant Planet Candidate Transiting a White Dwarf
- Preplanetary Nebulae: An HST Imaging Survey and a New Morphological Classification System
- CARMENES input catalogue of M dwarfs V. Luminosities, colours, and spectral energy distributions
- Accretion of a giant planet onto a white dwarf
- A Debris Disk around the Central Star of the Helix Nebula?
- CalFUSE v3: A Data-Reduction Pipeline for the Far Ultraviolet Spectroscopic Explorer
- Secular Evolution Of Binaries Near Massive Black Holes: Formation of compact binaries, merger/collision products and G2-like objects
- The frequency of gaseous debris discs around white dwarfs
- Evolution and Mass Loss of Cool Ageing Stars: a Daedalean Story
- Further ALMA observations and detailed modeling of the Red Rectangle
- Shallow Cavities in Multiple-Planet Systems
- Large-amplitude variables in Gaia Data Release 2. Multi-band variability characterization
- A mid-IR interferometric survey with MIDI/VLTI: resolving the second-generation protoplanetary disks around post-AGB binaries
- AGB winds in interacting binary stars
- The MUSE view of the planetary nebula NGC 3132
- Unseen companions of V Hya inferred from periodic ejections
- Dissecting the central regions of OH 231.8 + 4.2 with ALMA: a salty rotating disk at the base of a young bipolar outflow