A fast test for the identification and confirmation of massive black hole binaries
arXiv:2310.06896 · doi:10.1051/0004-6361/202346916
Abstract
We present a new observational test to identify massive black hole binaries in large multi-epoch spectroscopical catalogues and to probe the real nature of already proposed binary candidates. The test is tailored for binaries with separations large enough to allow each black hole to retain its own broad line region. In this limit the fast AGN variability typically observed over months cannot be associated to the much longer binary period, and it is assumed (as for the case of single black holes) to be the consequence of the evolution of the innermost regions of the two accretion discs. A simple analysis of the cross-correlation between different parts of individual broad emission lines can therefore identify the presence of two massive black holes whose continua vary independently of each other. Our analysis indicates that to be less affected by the noise in the spectra the broad lines should be divided in two close-to-equal-flux parts. This ensures that in the single massive black hole scenario the cross-correlation will always be high. With monitoring campaigns similar to those performed for reverberation mapping studies, on the other way, a binary can show any value of the cross-correlation and can therefore be distinguished from a standard AGN. The new test can be performed over timescales orders of magnitude shorter than the alternative tests already discussed in literature, and can be a powerful complement to the massive black hole binary search strategies already in place.
9 pages, 6 figures, accepted for publication on Astronomy & Astrophysics
References in corpus (15)
- A massive binary black-hole system in OJ287 and a test of general relativity
- The Eighteenth Data Release of the Sloan Digital Sky Surveys: Targeting and First Spectra from SDSS-V
- Double-peaked profiles: ubiquitous signatures of disks in the Broad Emission Lines of Active Galactic Nuclei
- Periodic self-lensing from accreting massive black hole binaries
- A supermassive binary black hole with triple disks
- The Keck Baryonic Structure Survey: Using foreground/background galaxy pairs to trace the structure and kinematics of circumgalactic neutral hydrogen at
- The Pairing of Accreting Massive Black Holes in Multiphase Circumnuclear Disks: the Interplay between Radiative Cooling, Star Formation, and Feedback Processes
- Searching for Binary Supermassive Black Holes via Variable Broad Emission Line Shifts: Low Binary Fraction
- Global torques and stochasticity as the drivers of massive black hole pairing in the young Universe
- Self-lensing flares from black hole binaries I: general-relativistic ray tracing of black hole binaries
- Self-lensing flares from black hole binaries II: observing black hole shadows via light-curve tomography
- The role of bars on the dynamical-friction driven inspiral of massive perturbers
- Kinematic signatures of reverberation mapping of close binaries of supermassive black holes in active galactic nuclei. II. Atlas of two-dimensional transfer functions
- Optical follow-up of the tick-tock massive black hole binary candidate
- The SDSS-V Black Hole Mapper Reverberation Mapping Project: Unusual Broad-Line Variability in a Luminous Quasar
Cited by in corpus (5)
- ESPRESSO reveals a single but perturbed broad-line region in the supermassive black hole binary candidate PG 1302-102
- Testing compact massive black hole binary candidates through multi-epoch spectroscopy
- Identifying massive black hole binaries via light curve variability in optical time-domain surveys
- Can a time evolving, asymmetric broad line region mimic a massive black hole binary?
- Searching for unresolved massive black hole pairs through AGN photometric variability