Black hole mergers as tracers of spinning massive black hole and galaxy populations in the OBELISK simulation
arXiv:2303.00766 · doi:10.1051/0004-6361/202346295
Abstract
Massive black hole (BH) mergers will be key targets of future gravitational wave and electromagnetic observational facilities. In order to constrain BH evolution with the information extracted from BH mergers, one must take into account the complex relationship between the population of merging BHs and the global BH population. We analysed the high-resolution cosmological radiation-hydrodynamics simulation OBELISK, run to redshift , to study the properties of the merging BH population, and its differences with the underlying global BH population in terms of BH and galaxy properties. In post-processing, we calculated dynamical delays between the merger in the simulation at the resolution limit and the actual coalescence well below the resolution scale. We find that merging BHs are hosted in relatively massive galaxies with stellar mass . Given that galaxy mass is correlated with other BH and galaxy properties, BH mergers tend to also have a higher total BH mass and higher BH accretion rates than the global population of main BHs. These differences generally disappear if the merger population is compared with a BH population sampled with the same galaxy mass distribution as merger hosts. Galaxy mergers can temporarily boost the BH accretion rate and the host's star formation rate, which can remain active at the BH merger if sub-resolution delays are not taken into account. When dynamical delays are taken into account, the burst has generally faded by the time the BHs merge. BH spins are followed self-consistently in the simulation under the effect of accretion and BH mergers. We find that merging BHs have higher spins than the global population, but similar or somewhat lower spins compared to a mass-matched sample. For our sample, mergers tend to decrease the spin of the final BH remnant.
13 pages, 9 figures. Matches accepted version (A&A, 28/03/23)
References in corpus (26)
- Large Merger Recoils and Spin Flips From Generic Black-Hole Binaries
- A Luminous Quasar at Redshift 7.642
- Escape fraction of ionizing photons during reionization: effects due to supernova feedback and runaway OB stars
- New Horizons for Fundamental Physics with LISA
- Alignment of the spins of supermassive black holes prior to coalescence
- The dark nemesis of galaxy formation: why hot haloes trigger black hole growth and bring star formation to an end
- Black Holes on FIRE: Stellar Feedback Limits Early Feeding of Galactic Nuclei
- Building Merger Trees from Cosmological N-body Simulations
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- On the final spin from the coalescence of two black holes
- Growth and activity of black holes in galaxy mergers with varying mass ratios
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- The imprint of massive black hole formation models on the LISA data stream
- Off the Beaten Path: A New Approach to Realistically Model The Orbital Decay of Supermassive Black Holes in Galaxy Formation Simulations
- Circumbinary Accretion from Finite and Infinite Disks
- The erratic dynamical life of black hole seeds in high-redshift galaxies
- High-redshift major mergers weakly enhance star formation
- Black hole mergers from dwarf to massive galaxies with the NewHorizon and Horizon-AGN simulations
- Massive black hole evolution models confronting the n-Hz amplitude of the stochastic gravitational wave background
- Dynamical Friction Modeling of Massive Black Holes in Cosmological Simulations and Effects on Merger Rate Predictions
- Black hole evolution: II. Spinning black holes in a supernova-driven turbulent interstellar medium
- The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
- Linking the fate of massive black hole binaries to the active galactic nuclei luminosity function
- Compaction-Driven Black Hole Growth
- Stellar feedback-regulated black hole growth: driving factors from nuclear to halo scales
- Morphological evolution of supermassive black hole merger hosts and multimessenger signatures
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- Gravitational Wave Astronomy With TianQin
- Multimessenger study of merging massive black holes in the OBELISK simulation: gravitational waves, electromagnetic counterparts, and their link to galaxy and black hole populations
- Properties and merger signatures of galaxies hosting LISA coalescing massive black hole binaries
- Exploring Active Galactic Nuclei and Little Red Dots with the Obelisk simulation
- Cosmic evolution of black hole-spin and galaxy orientations: clues from the NewHorizon and Galactica simulations
- Wandering and escaping: recoiling massive black holes in cosmological simulations
- Probing massive black holes with gravitational waves
- Sequence modeling of higher-order wave modes of binary black hole mergers