A new probe of dark matter properties: gravitational waves from an intermediate mass black hole embedded in a dark matter mini-spike
arXiv:1301.5971 · doi:10.1103/PhysRevLett.110.221101
Abstract
An intermediate mass black hole (IMBH) may have a dark matter (DM) mini-halo around it and develop a spiky structure within less than a parsec from the IMBH. When a stellar mass object is captured by the mini-halo, it eventually infalls into such an IMBH due to gravitational wave back reaction which in turn could be observed directly by future space-borne gravitational wave experiments such as eLISA/NGO. In this paper, we show that the GW detectability strongly depends on the radial profile of the DM distribution. So if the GW is detected, the power index, that is, the DM density distribution would be determined very accurately. The DM density distribution obtained would make it clear how the IMBH has evolved from a seed BH and whether the IMBH has experienced major mergers in the past. Unlike the gamma ray observations of DM annihilation, GW is just sensitive to the radial profile of the DM distribution and even to non-interacting DM. Hence the effect we demonstrate here can be used as a new and powerful probe into DM properties.
6 pages,3 figures
References in corpus (2)
Cited by in corpus (108)
- Can environmental effects spoil precision gravitational-wave astrophysics?
- Prospects for Fundamental Physics with LISA
- Black holes in galaxies: environmental impact on gravitational-wave generation and propagation
- Detecting dark matter around black holes with gravitational waves: Effects of dark-matter dynamics on the gravitational waveform
- Gravitational waves from extreme-mass-ratio systems in astrophysical environments
- Black Holes' Dark Dress: On the merger rate of a subdominant population of primordial black holes
- Gravitational waves as a probe of dark matter mini-spikes
- Probing the existence of ultralight bosons with a single gravitational-wave measurement
- Constraints on the astrophysical environment of binaries with gravitational-wave observations
- Ionization of Gravitational Atoms
- Black holes and fundamental fields in Numerical Relativity: initial data construction and evolution of bound states
- Disks, spikes, and clouds: distinguishing environmental effects on BBH gravitational waveforms
- Measuring the dark matter environments of black hole binaries with gravitational waves
- The response of ultralight dark matter to supermassive black holes and binaries
- Environmental Effects for Gravitational-wave Astrophysics
- Gravitational wave probes of dark matter: challenges and opportunities
- Black holes surrounded by generic dark matter profiles: appearance and gravitational-wave emission
- The Science of the Einstein Telescope
- Primordial Black Holes
- Orbital fingerprints of ultralight scalar fields around black holes
- Extreme Dark Matter Tests with Extreme Mass Ratio Inspirals
- Gravitational-wave imprints of compact and galactic-scale environments in extreme-mass-ratio binaries
- Extreme mass-ratio inspirals into black holes surrounded by scalar clouds
- Dynamical Friction in Gravitational Atoms
- The Formation of Intermediate Mass Black Holes in Galactic Nuclei
- Gravitational waves with dark matter minispikes: the combined effect
- Circularization vs. Eccentrification in Intermediate Mass Ratio Inspirals inside Dark Matter Spikes
- Stirred and shaken: dynamical behavior of boson stars and dark matter cores
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- A Unique Multi-Messenger Signal of QCD Axion Dark Matter
- Black holes surrounded by generic matter distributions: polar perturbations and energy flux
- Probing the Nature of Black Holes: Deep in the mHz Gravitational-Wave Sky
- Dark matter: an efficient catalyst for intermediate-mass-ratio-inspiral events
- Black hole merger simulations in wave dark matter environments
- Probing Dark Matter Spikes via Gravitational Waves of Extreme Mass Ratio Inspirals
- Measuring dark matter spikes around primordial black holes with Einstein Telescope and Cosmic Explorer
- Priorities in gravitational waveforms for future space-borne detectors: vacuum accuracy or environment?
- The effect of wave dark matter on equal mass black hole mergers
- Relativistic drag forces on black holes from scalar dark matter clouds of all sizes
- Exploring dark matter spike distribution around the Galactic centre with stellar orbits
- Dark matter minispike: a significant enhancement of eccentricity for intermediate-mass-ratio-inspirals
- Extreme Gravity and Fundamental Physics
- The Lunar Gravitational-wave Antenna: Mission Studies and Science Case
- Comparing Accretion Disks and Dark Matter Spikes in Intermediate Mass Ratio Inspirals
- Importance of tidal resonances in extreme-mass-ratio inspirals
- Intermediate Mass-Ratio Inspirals with Dark Matter Minispikes
- Dark matter subhalos and unidentified sources in the Fermi 3FGL source catalog
- Constraining properties of asymmetric dark matter candidates from gravitational-wave observations
- Geodesics and gravitational waves in chaotic extreme-mass-ratio inspirals: the curious case of Zipoy-Voorhees black-hole mimickers
- Extreme mass ratio inspirals in galaxies with dark matter halos
- Adiabatically compressed wave dark matter halo and intermediate-mass ratio inspirals
- Spacetime metrics and ringdown waveforms for galactic black holes surrounded by a dark matter spike
- Dark matter concentrations in galactic nuclei according to polytropic models
- Searching for ultralight bosons with supermassive black hole ringdown
- Signatures of Ultralight Bosons in Compact Binary Inspiral and Outspiral
- Sharpening the dark matter signature in gravitational waveforms I: Accretion and eccentricity evolution
- Gravitational Radiation from hyperbolic encounters in the presence of dark matter
- Gravitational wave probes of particle dark matter: a review
- Sharpening the dark matter signature in gravitational waveforms II: Numerical simulations with the NbodyIMRI code
- Gravitational wave probes on self-interacting dark matter surrounding an intermediate mass black hole
- Waves from the Centre: Probing PBH and other Macroscopic Dark Matter with LISA
- Secondary accretion of dark matter in intermediate mass-ratio inspirals: Dark-matter dynamics and gravitational-wave phase
- Extreme mass ratio inspirals in rotating dark matter spikes
- Velocity Distribution of Dark Matter Spike around Schwarzschild Black Holes and Effects on Gravitational Waves from EMRIs
- Supersonic friction of a black hole traversing a self-interacting scalar dark matter cloud
- Drifting through the medium: kicks and self-propulsion of binaries within accretion disks and other environments
- Examining the effects of dark matter spikes on eccentric intermediate mass ratio inspirals using N-body simulations
- Extreme mass ratio inspirals in dark matter halos: dynamics and distinguishability of halo models
- Constraining Self-interacting Scalar Field Dark Matter From the Black Hole Shadow of the Event Horizon Telescope
- Impact of dark matter spikes on the merger rates of Primordial Black Holes
- Dark Matter Mounds: towards a realistic description of dark matter overdensities around black holes
- The eccentricity enhancement effect of intermediate-mass-ratio-inspirals: dark matter and black hole mass
- Axion star condensation around primordial black holes and microlensing limits
- Quantum gravity phenomenology at the dawn of the multi-messenger era -- A review
- Imprints of ultralight axions on the gravitational wave and pulsar timing measurement
- Probing vector gravitational atoms with eccentric intermediate mass-ratio inspirals
- Post-Newtonian effects in compact binaries with a dark matter spike: A Lagrangian approach
- Piercing of a solitonic boson star by a black hole
- Black holes and fundamental fields: hair, kicks and a gravitational "Magnus" effect
- Accretion of Self-interacting Scalar Field Dark Matter Onto a Reissner-Nordström Black Hole
- Probing dark-matter effects with gravitational waves using the parameterized post-Einsteinian framework
- Scattering of scalar, electromagnetic and gravitational waves from binary systems
- Fundamental Physics and Cosmology with TianQin
- Distinguish the environmental effects and modified theory of gravity with multiple massive black-hole binaries
- Probing dark matter halo profiles with multi-band observations of gravitational waves
- Astrophysics with the Laser Interferometer Space Antenna
- Universal Density and Velocity Distributions of Dark Matter around Massive Black Holes
- Intermediate mass ratio inspirals in dark matter halos
- Perspectives on fundamental cosmology from Low Earth Orbit and the Moon
- The Impact of Dark Matter on Gravitational Wave Detection by Space-based Interferometers
- Intermediate-mass-ratio inspirals with general dynamical friction in dark matter minispikes
- On Equation of State of Dark Matter around Massive Black Holes
- Detectability of dark matter density distribution via gravitational waves from binary black holes in the Galactic center
- A multi-parameter expansion for the evolution of asymmetric binaries in astrophysical environments
- Distinguishing dark matter halos with Extreme mass ratio inspirals
- Dynamical friction from scalar dark matter in the relativistic regime
- The Effect of Mission Duration on LISA Science Objectives
- The impact of relativistic corrections on the detectability of dark-matter spikes with gravitational waves
- Hints of Dark Matter Spikes in Low-mass X-ray Binaries: a critical assessment
- Mass and spin coevolution of black holes inspiralling through dark matter
- Challenging theories of gravitation: dark matter, compact objects and gravitational waves
- A supplementary radiation-reaction force between two binaries
- Gravitational memory meets astrophysical environments: exploring a new frontier through osculations
- Piercing of a boson star by a black hole
- MatBYIB: A Matlab-based code for Bayesian inference of extreme mass-ratio inspiral binary with arbitrary eccentricity
- Signatures of the Israel Junction II: Double Photon Rings in Slowly Rotating Kerr Spacetime with Thin Shell
- Isotropic Coordinates for Generalized Schwarzschild-like Solutions
- The effect of redshift degeneracy and the damping effect of viscous medium on the information extracted from gravitational wave signals