Gravitational-wave background from compact objects embedded in AGN accretion disks
arXiv:astro-ph/0610680 · doi:10.1103/PhysRevD.75.024034
Abstract
We consider a model in which massive stars form in a self-gravitating accretion disk around an active galactic nucleus (AGN). These stars may evolve and collapse to form compact objects on a time scale shorter than the accretion time, thus producing an important family of sources for LISA. Assuming the compact object formation/inspiral rate is proportional to the steady-state gas accretion rate, we use the intrinsic hard X-ray AGN luminosity function to estimate expected event rates and signal strengths. We find that these sources will produce a continuous low-frequency (<~ mHz) background detectable by LISA if more than 1% of the accreted matter is in the form of compact objects. For compact objects with masses >~ 10 solar masses the last stages of the inspiral events should be resolvable above a few mHz, with rates as high as a few hundred per year.
14 revtex pages, 14 figures
References in corpus (10)
- A Measurement of the Electromagnetic Luminosity of a Kerr Black Hole
- Black Hole Masses and Eddington Ratios at 0.3<z<4
- Estimating the Spin of Stellar-Mass Black Holes via Spectral Fitting of the X-ray Continuum
- The effect of mass-segregation on gravitational wave sources near massive black holes
- Confusion Noise from LISA Capture Sources
- The First INTEGRAL AGN Catalog
- How Much Mass do Supermassive Black Holes Eat in their Old Age?
- Detection methods for non-Gaussian gravitational wave stochastic backgrounds
- Evidence for Rapidly Spinning Black Holes in Quasars
- Gravitational signals due to tidal interactions between white dwarfs and black holes
Cited by in corpus (16)
- Wet Extreme Mass Ratio Inspirals May Be More Common For Spaceborne Gravitational Wave Detection
- Astrophysical Sources of Stochastic Gravitational-Wave Background
- Probing orbits of stellar mass objects deep in galactic nuclei with quasi-periodic eruptions
- Milli-Hertz Gravitational Wave Background Produced by Quasi-Periodic Eruptions
- Probing orbits of stellar mass objects deep in galactic nuclei with quasi-periodic eruptions -- II: population analysis
- Mass-gap extreme mass ratio inspirals
- Embers of Active Galactic Nuclei: Tidal Disruption Events and Quasiperiodic Eruptions
- Gravitational waves from stellar encounters
- Repeating Nuclear Transients as Candidate Electromagnetic Counterparts of LISA Extreme Mass Ratio Inspirals
- Superradiant clouds may be relevant for close compact object binaries
- Synchronizing the EMRIs and IMRIs in AGN accretion disks
- Secondary spins of extreme mass ratio inspirals: A probe to the formation channels
- Extended Emission-line Region in a Poststarburst Galaxy Hosting Tidal Disruption Event AT2019qiz and Quasiperiodic Eruptions
- Gravitomagnetic corrections on gravitational waves
- Captured are circularized: A relativistic treatment of extreme mass ratio inspirals crossing accretion disks
- Proposed method for searches of gravitational waves from PKS 2155-304 and other blazar flares