Morphology and Composition of the Helix Nebula
arXiv:astro-ph/9901060 · doi:10.1086/307215
Abstract
We present new narrow-band filter imagery in H-alpha and [N II] 6584 along with UV and optical spectrophotometry measurements from 1200 to 9600 Angstroms of NGC 7293, the Helix Nebula, a nearby, photogenic planetary nebula of large diameter and low surface brightness. Detailed models of the observable ionized nebula support the recent claim that the Helix is actually a flattened disk whose thickness is roughly one-third its diameter with an inner region containing hot, highly ionized gas which is generally invisible in narrow-band images. The outer visible ring structure is of lower ionization and temperature and is brighter because of a thickening in the disk. We also confirm a central star effective temperature and luminosity of 120,000K and 100L_sun, and we estimate a lower limit to the nebular mass to be 0.30M_sun. Abundance measurements indicate the following values: He/H=0.12 (+/-0.017), O/H=4.60x10^-4 (+/-0.18), C/O=0.87 (+/-0.12), N/O=0.54 (+/-0.14), Ne/O=0.33 (+/-0.04), S/O=3.22x10^-3 (+/-0.26), and Ar/O=6.74x10^-3 (+/-0.76). Our carbon abundance measurements represent the first of their kind for the Helix Nebula. The S/O ratio which we derive is anomalously low; such values are found in only a few other planetary nebulae. The central star properties, the super-solar values of He/H and N/O, and a solar level of C/O are consistent with a 6.5M_sun progenitor which underwent three phases of dredge-up and hot bottom burning before forming the planetary nebula.
50-page manuscript plus 11 postscript figures. This revised version corrects a typo in earlier submission. Nothing else has changed. Accepted for publication in the Astrophysical Journal
References in corpus (3)
Cited by in corpus (30)
- The Distribution Of Heavy Elements In Spiral And Elliptical Galaxies
- Planetary nebulae seen with TESS: Discovery of new binary central star candidates from Cycle 1
- Sulfur, Chlorine, and Argon Abundances in Planetary Nebulae. IV: Synthesis and the Sulfur Anomaly
- Knots in the Helix Nebula found in H2
- A New Look At Carbon Abundances In Planetary Nebulae. IV. Implications For Stellar Nucleosynthesis
- Unraveling the Helix Nebula: Its Structure and Knots
- High Resolution CO and H2 Molecular Line Imaging of a Cometary Globule in the Helix Nebula
- The creation of the Helix planetary nebula (NGC 7293) by multiple events
- Infrared Observations of The Helix Planetary Nebula
- Photoevaporating flows from the cometary knots in the Helix nebula (NGC 7293)
- The coronal line regions of planetary nebulae NGC6302 and NGC6537: 3-13um grating and echelle spectroscopy
- A Multi-Instrument Study of the Helix Nebula Knots with the Hubble Space Telescope
- The Multitude of Molecular Hydrogen Knots in the Helix Nebula
- On the Production of He, C and N by Low and Intermediate Mass Stars: A Comparison of Observed and Model-Predicted Planetary Nebula Abundances
- Anomalous radio emission from dust in the Helix
- Merged ionization/dissociation fronts in planetary nebulae
- VLA Observations of H I in the Helix Nebula (NGC 7293)
- Herschel Planetary Nebula Survey (HerPlaNS) - First Detection of OH+ in Planetary Nebulae
- The tails in the Helix Nebula NGC 7293
- CO in the C1 globule of the Helix nebula with ALMA
- Herschel spectral-mapping of the Helix Nebula (NGC 7293): Extended CO photodissociation and OH+ emission
- Herschel imaging of the dust in the Helix Nebula (NGC 7293)
- The Sigma - D relation for planetary nebulae
- Modelling the Warm H2 Infrared Emission of the Helix Nebula Cometary Knots
- Evidence for the disruption of a planetary system during the formation of the Helix Nebula
- A pilot study of the radio-continuum emission from MASH planetary nebulae
- Introducing PyCross: PyCloudy Rendering Of Shape Software for pseudo 3D ionisation modelling of nebulae
- OH emission from cometary knots in planetary nebulae
- The Effect of the Slit Configuration on the H 1-0~S(1) to Br Line Ratio of Spatially Resolved Planetary Nebulae
- A comparative study of O, Ne, Cl, and Ar in Hii regions and PNe of the Galactic disk: Temporal evolution of radial gradients?