J 2025

Binary black holes in magnetized disks of active galactic nuclei

RAJ, Kishor Joshi; Aryan BHAKE; Biswajit BANERJEE; Bhargav VAIDYA; Milton RUIZ et al.

Základní údaje

Originální název

Binary black holes in magnetized disks of active galactic nuclei

Autoři

RAJ, Kishor Joshi; Aryan BHAKE; Biswajit BANERJEE; Bhargav VAIDYA; Milton RUIZ; Antonios TSOKAROS; Andrea MIGNONE; Marica BRANCHESI; Amit SHUKLA a Miljenko ČEMELJIĆ

Vydání

ASTRONOMY & ASTROPHYSICS, LES ULIS CEDEX A, EDP SCIENCES S A, 2025, 0004-6361

Další údaje

Jazyk

angličtina

Typ výsledku

Článek v odborném periodiku

Obor

10308 Astronomy

Stát vydavatele

Francie

Utajení

není předmětem státního či obchodního tajemství

Odkazy

Impakt faktor

Impact factor: 5.800 v roce 2024

Organizační jednotka

Fyzikální ústav v Opavě

UT WoS

001624330200011

EID Scopus

2-s2.0-105022921552

Klíčová slova anglicky

accretion;accretion disks;magnetohydrodynamics (MHD);methods: numerical;binaries: general;stars: black holes

Štítky

Příznaky

Mezinárodní význam, Recenzováno

Návaznosti

GX21-06825X, projekt VaV.
Změněno: 3. 2. 2026 11:44, Mgr. Pavlína Jalůvková

Anotace

V originále

Stellar-mass binary black hole (BBH) mergers that occur within the disks of active galactic nuclei (AGN) are promising sources for gravitational waves that can be detected by the LIGO, Virgo, and KAGRA interferometers. Some of these events have also been potentially associated with transient electromagnetic flares, indicating that BBH mergers in dense environments may be promising sources of multimessenger signals. To investigate the prospects for electromagnetic emission from these systems, we studied the dynamics of accretion flows onto BBHs that are embedded in AGN disks with numerical simulations. Although recent studies have explored this scenario, they often employed simplified disk models that neglected magnetic fields. We examined how strong magnetic fields affect and regulate the accretion onto these binary systems. In this context, we conducted three-dimensional magnetohydrodynamical local shearing-box simulations of a BBH system embedded within a magnetized disk of an AGN. The dynamically important magnetic fields can drive the formation of well-collimated outflows that can penetrate the vertical extent of the AGN disk. The outflow generation is not ubiquitous, however, and strongly depends on the radial distance of the binary from the supermassive black hole (SMBH). In particular, binaries placed at a larger distance from the central SMBH show a relatively stronger transient accretion and the formation of stronger spiral shocks. Furthermore, the accretion behavior onto the binary system via individual circum-singular disks is also modulated by local AGN disk properties. Our simulations highlight the importance of the shear velocity in the amplification of the toroidal magnetic field component, which plays a crucial role in governing the outflow strength.