Searching for central stars of planetary nebulae in Gaia DR2
arXiv:2001.08266 · doi:10.1051/0004-6361/202037554
Abstract
Context: Accurate distance measurements are fundamental to the study of Planetary Nebulae (PNe) but have long been elusive. The most accurate and model-independent distance measurements for galactic PNe come from the trigonometric parallaxes of their central stars, which were only available for a few tens of objects prior to the Gaia mission. Aims: Accurate identification of PN central stars in the Gaia source catalogues is a critical prerequisite for leveraging the unprecedented scope and precision of the trigonometric parallaxes measured by Gaia. Our aim is to build a complete sample of PN central star detections with minimal contamination. Methods: We develop and apply an automated technique based on the likelihood ratio method to match candidate central stars in Gaia Data Release 2 (DR2) to known PNe in the Hong Kong/AAO/Strasbourg H (HASH) PN catalogue, taking into account the BP--RP colours of the \emph{Gaia} sources as well as their positional offsets from the nebula centres. These parameter distributions for both true central stars and background sources are inferred directly from the data. Results: We present a catalogue of over 1000 Gaia sources that our method has automatically identified as likely PN central stars. We demonstrate how the best matches enable us to trace nebula and central star evolution and to validate existing statistical distance scales, and discuss the prospects for further refinement of the matching based on additional data. We also compare the accuracy of our catalogue to that of previous works.
15 pages, 11 figures, accepted for publication in Astronomy & Astrophysics
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- Towards a more complete sample of binary central stars of planetary nebulae with Gaia
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- The ionised and molecular mass of post-common-envelope planetary nebulae. The missing mass problem
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- A catalog of candidate double and lensed quasars from Gaia and WISE data
- Morphologies and Central Stars of Planetary Nebulae in the Galactic bulge from VLT, and Pan-STARRS imaging
- A study of extragalactic planetary nebulae populations based on spectroscopy. I. Data compilation and first findings
- Do All Low-Mass Stars Undergo Extra Mixing Processes?
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