Are He and N Abundances in Type I PNe as High as Empirically Derived?
arXiv:astro-ph/9802235 · doi:10.1086/305812
Abstract
Type I planetary nebulae (PNe) are defined as those with high He and N abundances (Peimbert & Torres-Peimbert 1983). These objects present in general bipolar geometries and have high stellar temperatures (Corradi & Schwarz 1995, Torres-Peimbert & Peimbert 1997). In this paper we analyse the empirical methods for abundance determination in order to check if the He and N overabundances in Type I PNe are a consequence of a geometrical effect, due to the bipolarity, or the ionization stratification, due to the stellar temperature. For this, we obtain simulated spherically symmetrical as well as bipolar nebulae, using a 3D photoionization code. From the projected emission line intensities for: a) the whole nebula; b) for a slit crossing the nebula; as well as c) for different positions in the nebula, we applied the formulae used in the literature to obtain empirical abundances. These empirical abundances are then compared with the adopted ones. We show that empirical abundances depend on the particular line of sight covered by the observation and can simulate an overabundance and/or the presence of abundance gradients of He and N in planetary nebulae with high stellar temperature. The geometrical effects are also discussed. Systematic errors in abundance determinations by empirical methods are higher for the N/H ratio than for N/O. Thus, it seems better to use the N/O value when discussing N rich objects.
19 pages, 5 figures, aastex package, to be published at Ap.J
Cited by in corpus (10)
- On the nitrogen abundance of FLIERs: the outer knots of the planetary nebula NGC 7009
- The 3-D ionization structure and evolution of NGC 7009 (Saturn Nebula)
- The temperature structure of dusty planetary nebulae
- Temperature of the central stars of planetary nebulae and the effect of the nebular optical depth
- Spatially resolved physical and chemical properties of the planetary nebula NGC 3242
- Evidence for fresh frost layer on the bare nucleus of comet Hale--Bopp at 32 AU distance
- Helium contamination from the progenitor stars of planetary nebulae: The He/H radial gradient and the Delta Y/Delta Z enrichment ratio
- Low-ionization structures in planetary nebulae -- II. Densities, temperatures, abundances and excitation of 6 PNe
- Planetary nebulae: abundances and abundance gradients
- When Shape Matters: correcting the ICFs to derive the chemical abundances of bipolar and elliptical PNe