OJ 287: A new BH mass estimate of the secondary

Author:

Titarchuk Lev,Seifina Elena,Shrader Chris

Abstract

We present a study of outburst activity in the BL Lacertae source OJ 287, which has been observed extensively with the X-ray telescope (XRT) on board the Neil Gehrels Swift Observatory. We demonstrate that the results of our analysis of X-ray flaring activity using the Swift/XRT data allow for the key characteristics of the OJ 287 secondary to be refined (its nature and mass). We discover that the energy spectra in all spectral states can be fitted using the XSPEC bulk motion Comptonization (BMC) model. As a result we find that the X-ray photon index of the BMC model, Γ, correlates with the mass accretion rate, . We establish that Γ increases monotonically with from the low-hard state, Γ ∼ 1.5, to the high-soft state, Γ ∼ 2.8, and finally saturates. The index behavior is similar to that in a number of black hole (BH) candidates in which we show that its saturation is observational evidence of the presence of a BH. Based on this correlation, we applied a scaling method and determine that a secondary BH mass in OJ 287 is about ∼1.25 × 108 solar masses, using the well-studied X-ray BH binaries XTE 1550–564, H 1743–322, 4U 1630–47, and GRS 1915+105 as well as extragalactic BHs ESO 243–49 and M101 ULX–1, as reference sources. Also, using the power spectrum analysis, we infer the size of the Compton cloud LCC ∼ 1013 cm where X-ray spectra were formed. Using this value of LCC, we confirm that a BH mass of the secondary in OJ 287 was on the order of 108 solar masses as we derived using the index, Γ–correlation (the scaling method) with respect of the mass accretion rate.

Publisher

EDP Sciences

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 5 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. Shadows and Photon Rings of Binary Black Holes;Gravitation and Cosmology;2024-05-21

2. SDSS J075217.84 + 193542.2: X-ray weighing of a secondary BH;Frontiers in Astronomy and Space Sciences;2024-04-24

3. The First Robust Evidence Showing a Dark Matter Density Spike Around the Supermassive Black Hole in OJ 287;The Astrophysical Journal Letters;2024-02-01

4. Thick Fluid Disks Around Binary Black Holes;Gravitation and Cosmology;2023-11-23

5. Relativistic binary-disc dynamics and the timing of OJ-287’s flares;Monthly Notices of the Royal Astronomical Society;2023-09-29

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