Bayesian Matching for X-ray and Infrared Sources in the MYStIX Project
arXiv:1309.4491 · doi:10.1088/0067-0049/209/2/30
Abstract
Identifying the infrared counterparts of X-ray sources in Galactic Plane fields such as those of the MYStIX project presents particular difficulties due to the high density of infrared sources. This high stellar density makes it inevitable that a large fraction of X-ray positions will have a faint field star close to them, which standard matching techniques may incorrectly take to be the counterpart. Instead we use the infrared data to create a model of both the field star and counterpart magnitude distributions, which we then combine with a Bayesian technique to yield a probability that any star is the counterpart of an X-ray source. In our more crowded fields, between 10 and 20% of counterparts that would be identified on the grounds of being the closest star to X-ray position within a 99% confidence error circle are instead identified by the Bayesian technique as field stars. These stars are preferentially concentrated at faint magnitudes. Equally importantly the technique also gives a probability that the true counterpart to the X-ray source falls beneath the magnitude limit of the infrared catalog. In deriving our method, we place it in the context of other procedures for matching astronomical catalogs.
12 pages, 6 figures. Accepted for publication in Astrophysical Journal Supplements (with 6 other MYStIX papers). Complete versions of all MYStIX papers are available at http://www.astro.psu.edu/mystix
References in corpus (13)
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- The UKIDSS Galactic Plane Survey
- The XMM-Newton wide-field survey in the COSMOS field: III. optical identification and multiwavelength properties of a large sample of X-ray selected sources
- X-ray Emission from T Tauri Stars and the Role of Accretion: Inferences from the XMM-Newton Extended Survey of the Taurus Molecular Cloud
- Probabilistic Cross-Identification of Astronomical Sources
- Overview of the Massive Young Star-Forming Complex Study in Infrared and X-ray (MYStIX) Project
- Identifying Young Stars in Massive Star-Forming Regions for the MYStIX Project
- The MYStIX InfraRed-Excess Source Catalog
- Empirical isochrones and relative ages for young stars, and the radiative-convective gap
- A Massive Young Star-Forming Complex Study in Infrared and X-ray: Mid-Infrared Observations and Catalogs
- The Wide-Field Near Infrared Data: Optimal Photometry in Crowded Fields
- A Massive Young Star-Forming Complex Study in Infrared and X-ray: X-ray Sources in Ten Star Forming Regions
- Matching Catalogues by Probabilistic Pattern Classification
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