Neurino Cadence of TXS~0506+056 Consistent with Supermassive Binary Origin
arXiv:2210.00202 · doi:10.3847/2041-8213/aca65d
Abstract
On September 18, 2022, an alert by ceCube indicated that a ~170TeV neutrino arrived in directional coincidence with the blazar TXS 0506+056. This event adds to two previous ones: a neutrino alert from its direction on September 22, 2017, and a 3sigma signature of a dozen neutrinos in 2014/2015. deBruijn 2020 showed that these two previous neutrino emission episodes could be due to a supermassive binary black hole (SMBBH) where jet precession close to final coalescence results in periodic emission. This model predicted a new emission episode consistent with the September 18, 2022 neutrino observation. Here, we show that the neutrino cadence of TXS 0506+056 is consistent with a SMBBH origin with mass ratios q<0.3 for a total black hole mass of M>3e8Msun. For the first time, we calculate the characteristic strain of the gravitational wave emission of the binary, and show that the merger could be detectable by LISA for black hole masses <5e8Msun if the mass ratios are in the range 0.1<q<0.3. We predict that there can be a neutrino flare existing in the still to be analyzed IceCube data peaking some time between 08/2019 and 01/2021 if a precessing jet is responsible for all three detected emission episodes. The next flare is expected to peak in the period 01/2023 to 08/2026. Further observation will make it possible to constrain the mass ratio as a function of the black hole mass more precisely and would open the window toward the preparation of the detection of SMBBH mergers.
10 pages, 2 figures, submitted
References in corpus (9)
- Gravitational-wave sensitivity curves
- Time-integrated Neutrino Source Searches with 10 years of IceCube Data
- TXS 0506+056, the first cosmic neutrino source, is not a BL Lac
- The spin-flip phenomenon in supermassive black hole binary mergers
- Spectroscopy of 10 gamma-ray BL Lac objects at high redshift
- Astro-COLIBRI -- The COincidence LIBrary for Real-time Inquiry for multimessenger astrophysics
- Extragalactic neutrino emission induced by Supermassive and Stellar Mass Black Hole mergers
- A self-lensing supermassive binary black hole at radio frequencies: the story of Spikey continues
- Solving the multi-messenger puzzle of the AGN-starburst composite galaxy NGC 1068
Cited by in corpus (5)
- Precession-induced Variability in AGN Jets and OJ 287
- Astro-COLIBRI 2 -- an advanced platform for real-time multi-messenger discoveries
- Signatures of a spinning supermassive black hole binary on the mas-scale jet of the quasar S5 1928+738 based on 25 years of VLBI data
- Neutrino Emissions of TXS 0506+056 caused by a Supermassive Binary Black Hole Inspiral?
- A two-step strategy to identify episodic sources of gravitational waves and high energy neutrinos in starburst galaxies