Multiband cross-correlated radio variability of the blazar 3C 279

Author:

Mohana A Krishna1ORCID,Gupta Alok C12ORCID,Marscher Alan P3ORCID,Sotnikova Yulia V45ORCID,Jorstad S G36ORCID,Wiita Paul J7ORCID,Cui Lang8ORCID,Aller Margo F9ORCID,Aller Hugh D9ORCID,Kovalev Yu A10ORCID,Kovalev Y Y101112ORCID,Liu Xiang8ORCID,Mufakharov T V45ORCID,Popkov A V1012ORCID,Mingaliev M G4513ORCID,Erkenov A K4ORCID,Nizhelsky N A4ORCID,Tsybulev P G4ORCID,Zhao Wei1415ORCID,Weaver Z R3ORCID,Morozova D A6ORCID

Affiliation:

1. Aryabhatta Research Institute of Observational Sciences (ARIES) , Manora Peak, Nainital 263001 , India

2. Key Laboratory for Research in Galaxies and Cosmology, Shanghai Astronomical Observatory, Chinese Academy of Sciences , Shanghai 200030 , China

3. Institute for Astrophysical Research, Boston University , 725 Commonwealth Avenue, Boston, MA 02215 , USA

4. Special Astrophysical Observatory of RAS , Nizhny Arkhyz 369167 , Russia

5. Kazan Federal University , 18 Kremlyovskaya St., Kazan 420008 , Russia

6. St. Petersburg State University , 7/9 Universsitetsjaya nab., St Petersburg 199034 , Russia

7. Department of Physics, The College of New Jersey , 2000 Pennington Rd., Ewing, NJ 08628-0718 , USA

8. Xinjiang Astronomical Observatory, Chinese Academy of Sciences , 150 Science 1-Street, Urumqi 830011 , China

9. Department of Astronomy, University of Michigan , 1085 S. University Avenue, Ann Arbor, MI 48109 , USA

10. Astro Space Center, Lebedev Physical Institute, Russian Academy of Sciences , Moscow 117991 Russia

11. Max-Planck-Institut für Radioastronomie , Auf dem Hügel 69, D-53121 Bonn , Germany

12. Moscow Institute of Physics and Technology , Institutsky per. 9, Dolgoprudny 141700 Russia

13. Institute of Applied Astronomy, Russian Academy of Sciences , St Petersburg 191187 , Russia

14. Shanghai Astronomical Observatory, Chinese Academy of Sciences , Shanghai 200030 , China

15. Key Laboratory of Radio Astronomy, Chinese Academy of Sciences , Nanjing 210008 , China

Abstract

ABSTRACT We present the results of our study of cross-correlations between long-term multiband observations of the radio variability of the blazar 3C 279. More than a decade (2008–2022) of radio data were collected at seven different frequencies ranging from 2 to 230 GHz. The multiband radio light curves show variations in flux, with the prominent flare features appearing first at higher-frequency and later in lower-frequency bands. This behaviour is quantified by cross-correlation analysis, which finds that the emission at lower-frequency bands lags that at higher-frequency bands. Lag versus frequency plots are well fit by straight lines with negative slope, typically ∼−30 day GHz−1. We discuss these flux variations in conjunction with the evolution of bright moving knots seen in multiepoch Very Long Baseline Array maps to suggest possible physical changes in the jet that can explain the observational results. Some of the variations are consistent with the predictions of shock models, while others are better explained by a changing Doppler beaming factor as the knot trajectory bends slightly, given a small viewing angle to the jet.

Funder

NSF

NASA

University of Michigan

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Multi-messenger emission characteristics of blazars;Frontiers in Astronomy and Space Sciences;2024-09-05

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