The role of binarity in Wolf-Rayet central stars of planetary nebulae
arXiv:1507.07707 · doi:10.1051/eas/1571024
Abstract
Over a hundred planetary nebulae (PNe) are known to have H-deficient central stars that mimic the spectroscopic appearance of massive Wolf-Rayet stars. The formation of these low-mass Wolf-Rayet stars, denoted [WR] stars, remains poorly understood. While several binary formation scenarios have been proposed, there are too few [WR] binaries known to determine their feasibility. Out of nearly 50 post-common-envelope (post-CE) binary central stars known, only PN G222.804.2 ([WC7], d) and NGC 5189 ([WO1], d) have a [WR] component. The available data suggests that post-CE central stars with [WR] components lack main sequence companions and have a wider orbital separation than typical post-CE binaries. There is also some indirect evidence for wide binaries that could potentially lead to the discovery of more [WR] binaries.
To appear in conference proceedings of the Physics of Evolved Stars meeting. 4 pages
References in corpus (5)
- Binary Planetary Nebulae Nuclei towards the Galactic Bulge. I. Sample Discovery, Period Distribution and Binary Fraction
- Constraints on Common Envelope Magnetic Fields from Observations of Jets in Planetary Nebulae
- 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
- Binary central stars of planetary nebulae with long orbits: the radial velocity orbit of BD+33.2642 (PN G052.7+50.7) and the orbital motion of HD112313 (PN LoTr5)
- SALT reveals the barium central star of the planetary nebula Hen 2-39