English

Accretion rates of stellar-mass compact objects embedded in AGN discs

High Energy Astrophysical Phenomena 2025-11-19 v1 Astrophysics of Galaxies

Abstract

Stellar-mass compact objects (COs) embedded in active galactic nucleus (AGN) discs are commonly assumed to accrete via Bondi or Bondi-Hoyle-Lyttleton (BHL) prescriptions, neglecting gas angular momentum. We show that differential rotation in AGN discs can impart non-negligible angular momentum, in which case accretion proceeds through a viscous disc rather than Bondi/BHL flow. Our model provides a new framework estimating the CO accretion rate as M˙CO=min{M˙vis,M˙BHL}\dot{M}_\mathrm{CO} = \min\{\dot{M}_\mathrm{vis}, \dot{M}_\mathrm{BHL}\}, where the viscous rate M˙vis\dot{M}_\mathrm{vis} accounts for gas--CO relative motion decomposed into a local gradient term (due to differential rotation) and bulk motion (from differing orbital parameters). This rate can be expressed as M˙vis=αξ(rH/rBHL)3M˙BHL\dot{M}_\mathrm{vis} = \alpha \xi (r_\mathrm{H}/r_\mathrm{BHL})^3\dot{M}_\mathrm{BHL}, where ξ\xi is a coefficient of order unity. It can also be approximately scaled to the global AGN accretion rate as M˙visM˙1\dot{M}_\mathrm{vis} \propto \dot{M}_1, with the scaling coefficients in both forms determined by the specific dynamical configuration. The accretion is viscosity-limited when q>[αξ(1+M2)3/3]1/2h3q > [\alpha \xi(1+\mathcal{M}^2)^{3}/3]^{1/2} h^3, where qq is the mass ratio between the CO and the supermassive black hole, α\alpha the viscosity parameter, M\mathcal{M} the Mach number of the bulk relative motion, and hh the aspect ratio of the AGN disc. In thin AGN discs this condition is satisfied for most stellar-mass or more massive COs. Our framework also naturally allows for the inclusion of established outflow corrections, thereby enabling a more realistic treatment of super-Eddington flows. Our formulation thus improves upon Bondi/BHL prescriptions and offers a more physically motivated basis for studying CO evolution in AGN environments.

Keywords

Cite

@article{arxiv.2510.26111,
  title  = {Accretion rates of stellar-mass compact objects embedded in AGN discs},
  author = {Cheng-Liang Jiao and Liying Zhu and Er-gang Zhao and Jia Zhang},
  journal= {arXiv preprint arXiv:2510.26111},
  year   = {2025}
}

Comments

14 pages, 5 figures, accepted for publication in MNRAS