Signatures of ultralight bosons in the orbital eccentricity of binary black holes
arXiv:2403.02415 · doi:10.1103/PhysRevLett.133.121401
Abstract
We show that the existence of clouds of ultralight particles surrounding black holes during their cosmological history as members of a binary system can leave a measurable imprint on the distribution of masses and orbital eccentricities observable with future gravitational-wave detectors. Notably, we find that for nonprecessing binaries with chirp masses , formed exclusively in isolation, larger-than-expected values of the eccentricity, i.e. at gravitational-wave frequencies Hz, would provide tantalizing evidence for a new particle of mass between eV in nature. The predicted evolution of the eccentricity can also drastically affect the in-band phase evolution and peak frequency. These results constitute unique signatures of boson clouds of ultralight particles in the dynamics of binary black holes, which will be readily accessible with the Laser Interferometer Space Antenna, as well as future mid-band and Deci-hertz detectors.
v2: 5 pages + 11 pages appendices and references, 11 figures; few typos corrected; added two sections to the appendices; published in PRL
References in corpus (31)
- Discovering the QCD Axion with Black Holes and Gravitational Waves
- Instability of the massive Klein-Gordon field on the Kerr spacetime
- Gravitational wave searches for ultralight bosons with LIGO and LISA
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Open data from the third observing run of LIGO, Virgo, KAGRA and GEO
- New Horizons for Fundamental Physics with LISA
- GW190521: orbital eccentricity and signatures of dynamical formation in a binary black hole merger signal
- Black holes as particle detectors: evolution of superradiant instabilities
- Black hole superradiance of self-interacting scalar fields
- Constraining stellar binary black hole formation scenarios with eLISA eccentricity measurements
- Superradiance in String Theory
- Ultralight boson cloud depletion in binary systems
- Sharp Signals of Boson Clouds in Black Hole Binary Inspirals
- Extreme mass-ratio inspirals into black holes surrounded by scalar clouds
- Dynamical Friction in Gravitational Atoms
- Aspects of Nonlinear Effect on Black Hole Superradiance
- Common envelope evolution of eccentric binaries
- Dissecting the properties of neutron star - black hole mergers originating in dense star clusters
- SuperRad: Modeling the black hole superradiance gravitational waveform
- Eccentricity evolution of massive black hole binaries from formation to coalescence
- Black hole superradiance with (dark) matter accretion
- Axion cloud evaporation during inspiral of black hole binaries -- the effects of backreaction and radiation
- Evolution of binary systems accompanying axion clouds in extreme mass ratio inspirals
- Relativistic perturbation theory for black-hole boson clouds
- Resolving the eccentricity of stellar mass binary black holes with next generation ground-based gravitational wave detectors
- The Population of Eccentric Binary Black Holes: Implications for mHz Gravitational Wave Experiments
- Signatures of Ultralight Bosons in Compact Binary Inspiral and Outspiral
- The minimum measurable eccentricity from gravitational waves of LISA massive black hole binaries
- Self-Interacting Gravitational Atoms in the Strong-Gravity Regime
- Probing Ultralight Bosons with Compact Eccentric Binaries
- Gravitational Wave Measurement in the Mid-Band with Atom Interferometers
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- The Science of the Einstein Telescope
- Eccentric or circular? A reanalysis of binary black hole gravitational wave events for orbital eccentricity signatures
- Fully Relativistic Treatment of Extreme Mass-Ratio Inspirals in Collisionless Environments
- Probing vector gravitational atoms with eccentric intermediate mass-ratio inspirals
- Tidal Love numbers of gravitational atoms
- Self-interaction effects on the Kerr black hole superradiance and their observational implications
- Common Envelope Evolution of Ultralight Boson Clouds
- Gravitational waves of quasi-circular, inspiraling black hole binaries in an ultralight vector dark-matter environment
- Self-Gravity in Superradiance Clouds: Implications for Binary Dynamics and Observational Prospects
- Scalar fields around black hole binaries in LIGO-Virgo-KAGRA
- Gravitational Waves from Superradiant Cloud Level Transition
- gravity in the solar system and cosmological scalarons
- Gravitational Wave Duet by Resonating Binary Black Holes within Ultralight Dark Matter
- On-shell approach to scalar hair in spinning binaries
- Eccentricity evolution of spinning binaries and its dependence on the equation of state of the components
- Hairless Black Hole by Superradiance
- Trails of clouds in binary black holes