Probing Boson Clouds with Supermassive Black Hole Binaries
arXiv:2505.02866 · doi:10.1088/1475-7516/2026/01/055
Abstract
Rotating black holes can generate boson clouds via superradiance when the boson's Compton wavelength is comparable to the black hole's size. In binary systems, these clouds can produce distinctive observational imprints. Recent studies accounting for nonlinearities induced by orbital backreaction suggest that if the binary forms at a large separation, resonance transitions can significantly deplete the cloud, minimizing later observational consequences except for very specific orbital inclinations. In this paper, we extend this framework to supermassive black hole binaries (SMBHBs), considering the influence of their astrophysical evolutionary histories. We find that, before entering the gravitational wave (GW) radiation stage, the additional energy loss channels can accelerate orbital evolution. This acceleration makes hyperfine resonant transitions inefficient, allowing a sufficient portion of the cloud to remain for later direct observations. We further discuss the ionization effects and cloud depletion occurring at this stage. Based on these theoretical insights, we explore how multi-messenger observations for SMBHBs can be utilized to detect the ionization effects of boson clouds by examining changes in the orbital period decay rate via electromagnetic measurements and variations in GW strain over a wide frequency band. Our findings reveal a complex dependence on the binary's total mass, mass ratio, and boson mass, emphasizing the significant role of astrophysical evolution histories in detecting boson clouds within binaries.
27 pages, 17 figures, 1 table
References in corpus (44)
- Coevolution (Or Not) of Supermassive Black Holes and Host Galaxies
- String Axiverse
- Ultralight scalars as cosmological dark matter
- Exploring the String Axiverse with Precision Black Hole Physics
- The NANOGrav 11-year Data Set: High-precision timing of 45 Millisecond Pulsars
- A Compact Supermassive Binary Black Hole System
- Evolution of massive binary black holes
- Ages and metallicities of early-type galaxies in the SDSS: new insight into the physical origin of the colour-magnitude and the Mg2-sigmaV relations
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- A possible close supermassive black-hole binary in a quasar with optical periodicity
- Probing Ultralight Bosons with Binary Black Holes
- Black holes as particle detectors: evolution of superradiant instabilities
- The Quest for Dual and Binary Supermassive Black Holes: A Multi-Messenger View
- The Spectra of Gravitational Atoms
- Gravitational radiation from an axion cloud around a black hole: Superradiant phase
- Primary black hole spin in OJ287 as determined by the General Relativity centenary flare
- Gravitational Collider Physics
- Identifying Supermassive Black Hole Binaries with Broad Emission Line Diagnosis
- Active Galactic Nuclei Feedback in an Elliptical Galaxy with the Most Updated AGN Physics (I): Low-angular Momentum Case
- The Atlas3D project - XXIV. The intrinsic shape distribution of early-type galaxies
- Authenticating the Presence of a Relativistic Massive Black Hole Binary in OJ 287 Using its General Relativity Centenary Flare: Improved Orbital Parameters
- A milliparsec supermassive black hole binary candidate in the galaxy SDSS J120136.02+300305.5
- Spectroscopic Indication for a Centi-parsec Supermassive Black Hole Binary in the Galactic Center of NGC 5548
- The First Spectroscopically Resolved Sub-parsec Orbit of a Supermassive Binary Black Hole
- Ultralight boson cloud depletion in binary systems
- Constraining the Orbit of Supermassive Black Hole Binary 0402+379
- Dynamic Signatures of Black Hole Binaries with Superradiant Clouds
- Sharp Signals of Boson Clouds in Black Hole Binary Inspirals
- Orbital fingerprints of ultralight scalar fields around black holes
- Gravitational floating orbits around hairy black holes
- Dynamical Friction in Gravitational Atoms
- A probable Milli-Parsec Supermassive Binary Black Hole in the Nearest Quasar Mrk 231
- Asteroids for Hz gravitational-wave detection
- Dynamical evolution of cosmic supermassive binary black holes and their gravitational wave radiation
- A Possible ~20 yr Periodicity in Long-term Optical Photometric and Spectral Variations of the Nearby Radio-Quiet Active Galactic Nucleus Ark 120
- Termination of Superradiance from a Binary Companion
- Active Galactic Nuclei Feedback in an Elliptical Galaxy with the Most Updated AGN Physics (II): High-Angular Momentum Case
- A Very Close Binary Black Hole in a Giant Elliptical Galaxy 3C 66B and its Black Hole Merger
- Axion cloud evaporation during inspiral of black hole binaries -- the effects of backreaction and radiation
- Black hole binaries and light fields: Gravitational molecules
- Evolution of diffuse scalar clouds around binary black holes
- Superradiant clouds may be relevant for close compact object binaries
- Effects of Superradiance in Active Galactic Nuclei
- the impact of the AGN and the torus properties on the evolution of spiral galaxies