Extreme Mass Ratio Inspirals in Light of Quasi-periodic Eruptions: Milli-Hertz Gravitational Wave Background
arXiv:2606.27661 · doi:10.1103/hgk4-wx1k
Abstract
Quasi-periodic eruptions (QPEs) are repeated X-ray bursts originating in galactic nuclei. Of the many proposed models, the favored model is the disk-collision model in which a stellar mass orbiter collides with a disk formed from a tidal disruption event, generating flares twice per orbit. In this model QPEs are tracers of circular extreme mass ratio inspirals (EMRIs) and can be used to infer the EMRI formation rate and estimate their contribution to the stochastic gravitational wave background (SGWB) in the Laser Interferometer Space Antenna (LISA) band. Whether the secondary is a stellar-mass black hole or a main sequence star is still debated and leads to different results for the EMRI rate and SGWB. We obtain fiducial rates -- subject to systematic uncertainties -- of per galaxy per year for stellar EMRIs and per galaxy per year for black hole EMRIs, then estimate their contribution to the SGWB. We find that only black hole EMRIs contribute to the 1 - 10 milliHertz band resolvable by LISA, and depending on the secondary mass and formation radius can contribute from just below the LISA sensitivity curve to roughly two orders of magnitude above it. Stellar EMRIs, being tidally disrupted before reaching the 1 - 10 milliHertz band, only contribute to sub-milliHertz frequencies and remain below the LISA sensitivity curve.
9 pages, 2 figures, and comments are welcome! This is version 2, revised for clarity and has added discussion. Accepted for publication in PRD
References in corpus (29)
- The TianQin project: current progress on science and technology
- X-ray Quasi-Periodic Eruptions from two previously quiescent galaxies
- X-ray quasi-periodic eruptions from the galactic nucleus of RX J1301.9+2747
- Formation Rate of Extreme Mass Ratio Inspirals in Active Galactic Nuclei
- Quasi-periodic eruptions from impacts between the secondary and a rigidly precessing accretion disc in an extreme mass-ratio inspiral system
- X-ray Quasi-periodic Eruptions driven by Star-Disc Collisions : Application to GSN069 and Probing the Spin of Massive Black Holes
- Interacting Stellar EMRIs as Sources of Quasi-Periodic Eruptions in Galactic Nuclei
- Wet Extreme Mass Ratio Inspirals May Be More Common For Spaceborne Gravitational Wave Detection
- Host galaxy properties of quasi-periodically erupting X-ray sources
- Gravitational wave background from extreme mass ratio inspirals
- Quasi--Periodic Eruptions from Galaxy Nuclei
- Tormund's return: Hints of quasi-periodic eruption features from a recent optical tidal disruption event
- Unstable Mass Transfer from a Main-Sequence Star to a Supermassive Black Hole and Quasi-Periodic Eruptions
- Modified models of radiation pressure instability in application to 10, 10, and 10 accreting black holes
- Monthly quasi-periodic eruptions from repeated stellar disruption by a massive black hole
- Probing orbits of stellar mass objects deep in galactic nuclei with quasi-periodic eruptions
- Extreme mass ratio inspirals and tidal disruption events in nuclear clusters. I. Time dependent rates
- Milli-Hertz Gravitational Wave Background Produced by Quasi-Periodic Eruptions
- Sensitivity functions for space-borne gravitational wave detectors
- Probing orbits of stellar mass objects deep in galactic nuclei with quasi-periodic eruptions -- II: population analysis
- Evidence for the preferential disruption of moderately massive stars by supermassive black holes
- Cosmic hide and seek: the volumetric rate of X-ray quasi-periodic eruptions
- Embers of Active Galactic Nuclei: Tidal Disruption Events and Quasiperiodic Eruptions
- Hanging on the cliff: Extreme mass ratio inspiral formation with local two-body relaxation and post-Newtonian dynamics
- Science Opportunities of Wet Extreme Mass-Ratio Inspirals
- Discovery of crested quasi-periodic eruptions following the most luminous SRG/eROSITA tidal disruption event
- Dynamical Measurement of Supermassive Black Hole Masses: QPE Timing Method
- Captured are circularized: A relativistic treatment of extreme mass ratio inspirals crossing accretion disks
- Fragments of harmony amid apparent chaos: a closer look at the X-ray quasi-periodic eruptions of the galaxy RX J1301.9+2747