X-ray intraday variability and power spectral density profiles of the blazar 3C 273 with XMM–Newton during 2000–2021

Author:

Pavana Gowtami G S1,Gaur Haritma2,Gupta Alok C2ORCID,Wiita Paul J3,Liao Mai45ORCID,Ward Martin6

Affiliation:

1. Department of Physics, Indian Institute of Technology (IIT) Bombay , Powai, Mumbai 400076, India

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

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

4. CAS Key Laboratory for Researches in Galaxies and Cosmology, Department of Astronomy, University of Science and Technology of China , Hefei, Anhui 230026, China

5. School of Astronomy and Space Science, University of Science and Technology of China , Hefei, Anhui 230026, China

6. Centre for Extragalactic Astronomy, Department of Physics, University of Durham , South Road, Durham DH1 3LE, UK

Abstract

ABSTRACT We present X-ray intraday variability and power spectral density (PSD) analyses of the longest 23 pointed XMM–Newton observations of the blazar 3C 273 that were taken during 2000–2021. These good time intervals contain between 5 and 24.6 h of data. Variability has been estimated in three energy bands: 0.2–2 keV (soft), 2–10 keV (hard), and 0.2–10 keV (total). 9 of the 23 observations exhibited some variability, though no major variations exceeding 5 per cent were detected. Typical time-scales for variability were ∼1 ks. For those variable light curves, we find that a power-law model provides good fits to each PSD, with most of the slopes between −1.7 and −2.8. Although no variations of hardness ratio (HR) could be measured in any individual observation, an anticorrelation in flux and HR is found in long term data that indicates a harder when brighter trend. Our flux and spectral analyses indicate that both particle acceleration and synchrotron cooling processes make an important contribution to the emission from this blazar.

Funder

NASA

Department of Science and Technology

China Postdoctoral Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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