PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
December 12, 2025Monthly Notices of the Royal Astronomical Society3 citationsOpen Access

Not all roads lead to merger: AGN disc properties influence the interactions of highly unequal mass black holes

View Full Paper
JMJoan MoncrieffEGEvgeni GrishinATAlessandro A. Trani

Key Points

  • To explore how AGN disc properties affect the interactions between unequal mass black holes.
  • Simulations using pAGN for AGN tork modeling and TSUNAMI for N-body dynamics.
  • Analyzing gravitational-wave events like GW190814 with mass ratio q.
  • Developing analytical models for capture and merger probabilities.
  • Demonstrated links between capture probabilities and disc properties.
  • Fit a log-Gaussian function to capture probabilities with specific parameters.
  • Identified AGN luminosity parameters conducive to forming GW190814.

Abstract

Abstract As the number of gravitational-wave detections of black hole binaries grows, so does the diversity of proposed formation channels. The growing sample of systems with highly unequal masses, such as GW190814 with m1 = 23. 2 M⊙ and m2 = 2. 59 M⊙ – corresponding to a mass ratio q = 0. 112 – cannot be readily explained by isolated binary evolution and may originate through dynamical assembly in an active galactic nucleus (AGN). We investigate AGN discs capable of producing GW190814-like mergers using pAGN to model self-consistent AGN torques, coupled with TSUNAMI, a regularised N-body code including post-Newtonian terms up to 3. 5 order. Suites of N-body simulations reveal possible outcomes of binary capture and merger, mean-motion resonance interactions, and other novel dynamical pathways. We develop analytical models linking the branching ratios of captures and mergers to local disc properties, applicable to black hole populations across all mass ratios. Capture probability is primarily governed by B, the ratio of libration time to resonance-width crossing, and is well-described by a log-Gaussian, P (capture| B) = A - (B-) ²/2 ², with A = 0. 41^+0. 04-₀. ₀₄, = 1. 09^+0. 08-₀. ₀₇, = 1. 05^+0. 08-₀. ₀₇. This fit, while an upper limit, is useful for simplified population synthesis. Finally, we explore the mass ratio AGN luminosity parameter space and find that GW190814 may be formed in a low luminosity AGN of L ₀₆₍ 10^43. 5\ erg\ s^-1. A more systematic parameter space exploration and future population studies will further test our predictions.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Moncrieff et al. (2025) studied this question.

synapsesocial.com/papers/6940192a2d562116f28f6b09https://doi.org/10.1093/mnras/staf2217
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Connecting the hierarchically merging binary black hole population to their host galaxies2025 · 4 citations
  2. 2Turbulent drag on stellar mass black holes embedded in disks of active galactic nuclei2025 · 3 citations
  3. 3Gas assisted binary black hole formation in AGN discs2024 · 39 citations
  4. 4The Fate of EMRI-IMRI Pairs in Active Galactic Nucleus Accretion Disks: Hydrodynamical and Three-body Simulations2025 · 4 citations
  5. 5Modeling gravitational few-body problems with tsunami and okinami2020 · 12 citations