Highly Variable Objects in the Palomar-QUEST Survey: A Blazar Search using Optical Variability
arXiv:0909.0014 · doi:10.1088/0004-637X/705/1/46
Abstract
We identify 3,113 highly variable objects in 7,200 square degrees of the Palomar-QUEST Survey, which each varied by more than 0.4 magnitudes simultaneously in two broadband optical filters on timescales from hours to roughly 3.5 years. The primary goal of the selection is to find blazars by their well-known violent optical variability. Because most known blazars have been found in radio and/or X-ray wavelengths, a sample discovered through optical variability may have very different selection effects, elucidating the range of behavior possible in these systems. A set of blazars selected in this unusual manner will improve our understanding of the physics behind this extremely variable and diverse class of AGN. The object positions, variability statistics, and color information are available using the Palomar-QUEST CasJobs server. The time domain is just beginning to be explored over large sky areas; we do not know exactly what a violently variable sample will hold. About 20% of the sample has been classified in the literature; over 70% of those objects are known or likely AGN. The remainder largely consists of a variety of variable stars, including a number of RR Lyrae and cataclysmic variables.
22 pages (preprint format), 2 figures. Accepted for publication in ApJ. References updated
References in corpus (14)
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- CRATES: An All-Sky Survey of Flat-Spectrum Radio Sources
- CGRaBS: An All-Sky Survey of Gamma-Ray Blazar Candidates
- The QUEST RR Lyrae Survey II: The Halo Overdensities in the First Catalog
- A Large-Area Search for Low Mass Objects in Upper Scorpius I: The Photometric Campaign and New Brown Dwarfs
- A Distributed Population of Low Mass Pre-Main Sequence Stars near the Taurus Molecular Clouds
- The Palomar-Quest Digital Synoptic Sky Survey
- ROXA: a new multi-frequency selected large sample of blazars with SDSS and 2dF optical spectroscopy
- Blazar Optical Variability in the Palomar-QUEST Survey
- The Multiple Timescales of Optical Variability of the Blazar 3C 279 During the 2001-2002 Outburst
- Short timescale variability in the Faint Sky Variability Survey
- The 2dF BL Lac Survey II
- The QUEST Data Processing Software Pipeline
- Exploring the Variable Sky with the Sloan Digital Sky Survey
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- Unveiling the nature of the unidentified gamma-ray sources II: radio, infrared and optical counterparts of the gamma-ray blazar candidates
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- A large sample of Kohonen-selected SDSS quasars with weak emission lines: selection effects and statistical properties
- The Nature of Transition Blazars
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- The extended High A(V) Quasar Survey: Searching for dusty absorbers toward mid-infrared selected quasars
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- An Effective Selection Method for Low-Mass Active Black Holes and First Spectroscopic Identification
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- Exploring the Time Domain With Synoptic Sky Surveys