Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers episode artwork

EPISODE · Nov 22, 2022 · 0 MIN

Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers

from Astro arXiv | all categories · host Corentin Cadiou

Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers by Shihong Liao et al. on Tuesday 22 November We introduce a new model for the accretion and feedback of supermassive black hole (SMBH) binaries to the KETJU code, which enables us to resolve the evolution of SMBH binaries down to separations of tens of Schwarzschild radii in gas-rich galaxy mergers. Our subgrid binary accretion model extends the widely used Bondi--Hoyle--Lyttleton accretion into the binary phase and incorporates preferential mass accretion onto the secondary SMBH, which is motivated by results from small-scale hydrodynamical circumbinary disc simulations. We perform idealised gas-rich disc galaxy merger simulations using pure thermal or pure kinetic active galactic nuclei (AGN) feedback. Our binary accretion model provides more physically motivated SMBH mass ratios, which are one of the key parameters for computing gravitational wave (GW) induced recoil velocities. The merger time-scales of our simulated SMBH binaries are in the range $t_{\rm merge}{\sim} 10$--$400$ Myr. Prograde in-plane equal-mass galaxy mergers lead to the shortest merger time-scales, as they experience the strongest starbursts, with the ensuing high stellar density resulting in a rapid SMBH coalescence. Compared to the thermal AGN feedback, the kinetic AGN feedback predicts longer merger time-scales and results in more core-like stellar profiles, as it is more effective in removing gas from the galaxy centre and quenching star formation. This suggests that the AGN feedback implementation plays a critical role in modelling SMBH coalescences. Our model will be useful for improving the modelling of SMBH mergers in gas-rich galaxies, the prime targets for the upcoming LISA GW observatory. arXiv: http://arxiv.org/abs/http://arxiv.org/abs/2211.11788v1

Episode metadata supplied by the publisher feed · Published Nov 22, 2022

Embed this episode

NOW PLAYING

Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers

0:00 0:59

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of Astro arXiv | all categories?

This episode is 0 minutes long.

When was this Astro arXiv | all categories episode published?

This episode was published on November 22, 2022.

Can I download this Astro arXiv | all categories episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!