On the physical association of Fermi-LAT blazars with their low-energy counterparts
arXiv:2004.11236 · doi:10.3847/1538-4365/ab8c4e
Abstract
Associating gamma-ray sources to their low-energy counterparts is one of the major challenges of modern gamma-ray astronomy. In the context of the Fourth Fermi Large Area Telescope Source Catalog (4FGL), the associations rely mainly on parameters as apparent magnitude, integrated flux, and angular separation between the gamma-ray source and its low-energy candidate counterpart. In this work we propose a new use of likelihood ratio and a complementary supervised learning technique to associate gamma-ray blazars in 4FGL, based only on spectral parameters as gamma-ray photon index, mid-infrared colors and radio-loudness. In the likelihood ratio approach, we crossmatch the WISE Blazar-Like Radio-Loud Sources catalog with 4FGL and compare the resulting candidate counterparts with the sources listed in the gamma-ray blazar locus to compute an association probability for 1138 counterparts. In the supervised learning approach, we train a random forest algorithm with 869 high confidence blazar associations and 711 fake associations, and then compute an association probability for 1311 candidate counterparts. A list with all 4FGL blazar candidates of uncertain type associated by our method is provided to guide future optical spectroscopic follow up observations.
12 pages, 5 figures, 3 tables, (pre-proof version)
References in corpus (17)
- The 5th edition of the Roma-BZCAT. A short presentation
- The WISE Blazar-Like Radio-Loud Sources: An All-Sky Catalog Of Candidate Gamma-Ray Blazars
- Two new catalogs of blazar candidates in the WISE infrared sky
- Optical spectroscopic observations of gamma-ray blazars candidates I: preliminary results
- Optical spectroscopic observations of -ray blazar candidates VI. Further observations from TNG, WHT, OAN, SOAR and Magellan telescopes
- Optical spectroscopic observations of gamma-ray blazar candidates II. The 2013 KPNO campaign in the Northern Hemisphere
- Optical Spectroscopic Observations of Gamma-ray Blazar Candidates. V. TNG, KPNO, and OAN Observations of Blazar Candidates of Uncertain Type in the Northern Hemisphere
- Blazar Flaring Patterns (B-FlaP): Classifying Blazar Candidates of Uncertain type in the third Fermi-LAT catalog by Artificial Neural Networks
- Optical spectroscopic observations of gamma-ray blazar candidates III. The 2013/2014 campaign in the Southern Hemisphere
- Gamma-Ray Active Galactic Nucleus Type through Machine-Learning Algorithms
- The Gamma-ray Blazar Quest: new optical spectra, state of art and future perspectives
- Optical spectroscopic observations of gamma-ray blazar candidates IV. Results of the 2014 follow-up campaign
- Refining the associations of the Fermi Large Area Telescope Source Catalogs
- The Infrared-Gamma-Ray Connection: A WISE View of the Extragalactic Gamma-Ray Sky
- Optical Spectroscopic Observations of Gamma-Ray Blazar Candidates. VII. Follow-up Campaign in the Southern Hemisphere
- 3FGLzoo. Classifying 3FGL Unassociated Fermi-LAT Gamma-ray Sources by Artificial Neural Networks
- Optical spectroscopic observations of gamma-ray blazar candidates VIII: the 2016-2017 follow up campaign carried out at SPM, NOT, KPNO and SOAR telescopes
Cited by in corpus (7)
- Optical spectroscopic observations of low-energy counterparts of Fermi-LAT gamma-ray sources
- Powerful Radio Sources in the Southern Sky. I. Optical Identifications
- Deep Learning Blazar Classification based on Multi-frequency Spectral Energy Distribution Data
- How the dynamical properties of globular clusters impact their -ray and X-ray emission
- An XMM-Newton catalogue of BL Lacs
- A multifrequency characterization of the extragalactic hard X-ray sky
- On the origin of mid-infrared colors in -ray blazars