The binary fraction of planetary nebula central stars: the promise of VPHAS+
arXiv:1712.03194 · doi:10.1093/mnras/stx3240
Abstract
The majority of planetary nebulae (PNe) are not spherical, and current single-star models cannot adequately explain all the morphologies we observe. This has led to the Binary Hypothesis, which states that PNe are preferentially formed by binary systems. This hypothesis can be corroborated or disproved by comparing the estimated binary fraction of all PNe central stars (CS) to that of the supposed progenitor population. One way to quantify the rate of CS binarity is to detect near infra-red (IR) excess indicative of a low-mass main sequence companion. In this paper, a sample of known PNe within data release 2 of the ongoing VPHAS+ are investigated. We give details of the method used to calibrate VPHAS+ photometry, and present the expected colours of CS and main sequence stars within the survey. Objects were scrutinized to remove PN mimics from our sample and identify true CS. Within our final sample of 7 CS, 6 had previously either not been identified or confirmed. We detected an band excess indicative of a low-mass companion star in 3 CS, including one known binary, leading us to to conclude that VPHAS+ provides the precise photometry required for the IR excess method presented here, and will likely improve as the survey completes and the calibration process finalised. Given the promising results from this trial sample, the entire VPHAS+ catalogue should be used to study PNe and extend the IR excess-tested CS sample.
21 pages, 9 figures, accepted for publication in MNRAS
References in corpus (8)
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- The VST Photometric Halpha Survey of the Southern Galactic Plane and Bulge (VPHAS+)
- The Molonglo Galactic Plane Survey (MGPS-2): Compact Source Catalogue
- Binarity and the abundance discrepancy problem in planetary nebulae
- Observational Confirmation of a Link Between Common Envelope Binary Interaction and Planetary Nebula Shaping
- Binary Central Stars of Planetary Nebulae Discovered Through Photometric Variability V: The Central Stars of HaTr 7 and ESO 330-9
- Where Are the Binaries? Results of a Long-Term Search for Radial Velocity Binaries in Proto-Planetary Nebulae
- The Central Star Candidate of the Planetary Nebula Sh2-71: Photometric and Spectroscopic Variability
Cited by in corpus (10)
- Binary Central Stars of Planetary Nebulae Identified With Kepler/K2
- Inclined jets inside a common envelope of a triple stellar system
- The formation of `columns crowns' by jets interacting with a circumstellar dense shell
- A high-mass Planetary Nebula in a Galactic Open Cluster
- Catalog of Planetary Nebulae detected by GALEX and corollary optical surveys
- On the role of reduced wind mass-loss rate in enabling exoplanets to shape planetary nebulae
- The future influence of six exoplanets on the envelope properties of their parent stars on the giant branches
- Detection of wide binary and multiple nuclei of planetary nebulae using the Gaia DR3
- Hot white dwarf candidates from the IGAPS-GALEX cross-match
- Central Stars of Planetary Nebulae in Galactic Open Clusters: Providing additional data for the White Dwarf Initial-to-Final-Mass Relation