1. The Sloan Digital Sky Survey Reverberation Mapping Project: the XMM-Newton X-ray source catalog and multi-band counterparts
- Author
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T. Simm, Yue Shen, W. N. Brandt, Andrea Merloni, Johannes Buchner, Kirpal Nandra, Donald P. Schneider, Antonis Georgakakis, Tom Dwelly, Teng Liu, Mara Salvato, Paul J. Green, and Luis C. Ho
- Subjects
Physics ,High Energy Astrophysical Phenomena (astro-ph.HE) ,Supermassive black hole ,Active galactic nucleus ,010504 meteorology & atmospheric sciences ,media_common.quotation_subject ,Astrophysics::High Energy Astrophysical Phenomena ,Astrophysics::Instrumentation and Methods for Astrophysics ,Astronomy ,FOS: Physical sciences ,Astronomy and Astrophysics ,Quasar ,Astrophysics::Cosmology and Extragalactic Astrophysics ,01 natural sciences ,Space and Planetary Science ,Sky ,0103 physical sciences ,Reverberation mapping ,Astrophysics - High Energy Astrophysical Phenomena ,010303 astronomy & astrophysics ,Reliability (statistics) ,Astrophysics::Galaxy Astrophysics ,0105 earth and related environmental sciences ,media_common - Abstract
The XMM-RM project was designed to provide X-ray coverage of the Sloan Digital Sky Survey Reverberation Mapping (SDSS-RM) field. 41 XMM-Newton exposures, placed surrounding the Chandra AEGIS field, were taken, covering an area of 6.13 deg^2 and reaching a nominal exposure depth of ~15 ks. We present an X-ray catalog of 3553 sources detected in these data, using a PSF-fitting algorithm and a sample selection threshold that produces a ~5% fraction of spurious sources. In addition to the PSF-fitting likelihood, we calculate a second source reliability measure based on Poisson theory using source and background counts within an aperture. Using the Poissonian likelihood, we select a sub-sample with a high purity and find that it has similar number count profiles to previous X-ray surveys. The Bayesian method "NWAY" was employed to identify counterparts of the X-ray sources from the optical Legacy and the IR unWISE catalogs, using a 2-dimensional unWISE magnitude-color prior created from optical/IR counterparts of Chandra X-ray sources. A significant number of the optical/IR counterparts correspond to sources with low detection likelihoods, proving the value of retaining the low-likelihood detections in the catalog. 932 of the XMM-RM sources are covered by SDSS spectroscopic observations. 89% of them are classified as AGN, and 71% of these AGN are in the SDSS-RM quasar catalog. Among the SDSS-RM quasars, 80% are detectable at the depth of the XMM observations., Comment: ApJS accepted. 20 pages, 16 figures
- Published
- 2020
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