On the need of an ultramassive black hole in OJ 287
arXiv:2308.03017 · doi:10.1093/mnras/stad2249
Abstract
The highly variable blazar OJ~287 is commonly discussed as an example of a binary black hole system. The 130 year long optical light curve is well explained by a model where the central body is a massive black hole of 18.3510 solar mass that supports a thin accretion disc. The secondary black hole of 0.1510 solar mass impacts the disc twice during its 12 year orbit, and causes observable flares. Recently, it has been argued that an accretion disc with a typical AGN accretion rate and above mentioned central body mass should be at least six magnitudes brighter than OJ~287's host galaxy and would therefore be observationally excluded. Based on the observations of OJ~287's radio jet, detailed in Marscher and Jorstad (2011), and up-to-date accretion disc models of Azadi et al. (2022), we show that the V-band magnitude of the accretion disc is unlikely to exceed the host galaxy brightness by more than one magnitude, and could well be fainter than the host. This is because accretion power is necessary to launch the jet as well as to create electromagnetic radiation, distributed across many wavelengths, and not concentrated especially on the optical V-band. Further, we note that the claimed V-band concentration of accretion power leads to serious problems while interpreting observations of other Active Galactic Nuclei. Therefore, we infer that the mass of the primary black hole and its accretion rate do not need to be smaller than what is determined in the standard model for OJ~287.
References in corpus (11)
- A massive binary black-hole system in OJ287 and a test of general relativity
- Supermassive black holes as the regulators of star formation in central galaxies
- Spitzer Observations of the Predicted Eddington Flare from Blazar OJ 287
- Absence of the predicted 2022 October outburst of OJ 287 and implications for binary SMBH scenarios
- Refining the 2022 OJ 287 impact flare arrival epoch
- An empirical relation to estimate host galaxy stellar light from AGN spectra
- A hadronic emission model for black hole-disc impacts in the blazar OJ 287
- The SOUX AGN Sample: SDSS-XMM-Newton Optical, Ultraviolet and X-ray selected active galactic nuclei spanning a wide range of parameter space -- Sample definition
- The host galaxy of OJ 287 revealed by optical and near-infrared imaging
- Host galaxy magnitude of OJ 287 from its colours at minimum light
- The Bolometric Luminosity Correction of Radio-Quiet and Radio-Loud Quasars at 1<z<2