Spectroscopy of southern Galactic disk planetary nebulae. Notes on chemical composition and emission-line stars
arXiv:1406.1048 · doi:10.1051/0004-6361/201322025
Abstract
We present low resolution spectroscopic observations for a sample of 53 planetary nebulae (PNe) located in the southern sky between Vela and Norma constellations and pertaining to the Galactic disk with expected Galactocentric distance range of 5 to 10 kpc. We derive nebular chemical composition and plasma parameters with the classical empirical method. For most of the observed objects, this has been done for the first time. The distributions of the chemical abundances of the observed disk sample are generally indistinguishable from Galactic bulge and inner-disk PNe populations. The exceptions are possible differences in the He/H distribution, as compared to bulge PNe and Ne/Ar, compared to inner-disk PNe sample. The derived O/H ratios for the observed disk PNe fit to the concept of flattening of the chemical gradient in the inner parts of the Milky Way. We use the spectra to search for emission-line central stars in the observed sample. We found 6 new emission-line central stars comprising examples of all known types: WEL, VL and [WR]. We confirm that these types represent three evolutionary unconnected forms of enhanced mass-loss in the central stars of PNe. We note on the problem of high ionisation PNe with nebular CIV emission that can mimic the presence of WEL central stars in 1D spectra.
35 pages, 19 figures, 4 tables (Note: corrected error in measured flux of [O II] 7325 lines in Table B.1)
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Cited by in corpus (6)
- Catalogue of central stars of planetary nebulae: Expanded edition
- A radial velocity survey for post-common-envelope Wolf-Rayet central stars of planetary nebulae: First results and discovery of the close binary nucleus of NGC 5189
- Improved spectral descriptions of planetary nebulae central stars
- The impact of spectra quality on nebular abundances
- The ionised and molecular mass of post-common-envelope planetary nebulae. The missing mass problem
- Low-ionization structures in planetary nebulae -- II. Densities, temperatures, abundances and excitation of 6 PNe