First Light And Reionization Epoch Simulations (FLARES) -- XIX: Supermassive black hole mergers in the early Universe and their environmental dependence
arXiv:2505.12591 · doi:10.1093/mnras/staf1642
Abstract
The upcoming space-based gravitational wave (GW) observatory, LISA, is expected to detect GW signals from supermassive black hole (SMBH) mergers occurring at high redshifts. However, understanding the origin and growth of SMBHs in the early Universe remains an open problem in astrophysics. In this work, we utilize the First Light And Reionization Epoch Simulations (FLARES), a suite of cosmological hydrodynamical zoom-in simulations, to study SMBH mergers at across a wide range of environments. Most mergers in FLARES involve secondary SMBHs near the seed mass () while primary SMBHs span up to , resulting in mass ratios from to , with a peak at . The number of mergers increases rapidly towards lower redshifts, and the comoving total number density scales with overdensity as . Denser regions host more massive mergers, with higher merger redshifts and lower mass ratios. Within the FLARES redshift range, LISA is expected to detect mergers with and , corresponding to a detection rate of for events with signal-to-noise ratio . Our study demonstrates the sensitivity of GW predictions at high redshifts to SMBH seed models and merger time delays, highlighting the need for improved modeling in future cosmological simulations to maximize LISA's scientific return.
16 pages, 13 figures, accepted for publication in MNRAS
References in corpus (52)
- Array Programming with NumPy
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Laser Interferometer Space Antenna
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I
- The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- A CEERS Discovery of an Accreting Supermassive Black Hole 570 Myr after the Big Bang: Identifying a Progenitor of Massive z > 6 Quasars
- JADES. The diverse population of infant Black Holes at 4<z<11: merging, tiny, poor, but mighty
- Alignment of the spins of supermassive black holes prior to coalescence
- GA-NIFS: A massive black hole in a low-metallicity AGN at revealed by JWST/NIRSpec IFS
- The origins of massive black holes
- An Atlas of Color-selected Quiescent Galaxies at in Public Fields
- Off the Beaten Path: A New Approach to Realistically Model The Orbital Decay of Supermassive Black Holes in Galaxy Formation Simulations
- A surprising abundance of massive quiescent galaxies at 3 < z < 5 in the first data from JWST CEERS
- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
- The erratic dynamical life of black hole seeds in high-redshift galaxies
- Black hole mergers from dwarf to massive galaxies with the NewHorizon and Horizon-AGN simulations
- The redshift evolution of massive galaxy clusters in the MACSIS simulations
- Effects of gravitational-wave recoil on the dynamics and growth of supermassive black holes
- Seeding Black Holes in Cosmological Simulations
- Black hole evolution: II. Spinning black holes in a supernova-driven turbulent interstellar medium
- The importance of black hole repositioning for galaxy formation simulations
- Gravitational Wave Astronomy With TianQin
- Spin-driven jet feedback in idealised simulations of galaxy groups and clusters
- COSMOS2020: Exploring the dawn of quenching for massive galaxies at 3 < z < 5 with a new colour selection method
- Formation of the largest galactic cores through binary scouring and gravitational wave recoil
- Signatures of the Many Supermassive Black Hole Mergers in a Cosmologically Forming Massive Early-Type Galaxy
- Massive Black Hole Binaries from the TNG50-3 Simulation: I. Coalescence and LISA Detection Rates
- Massive Black Hole Mergers with Orbital Information: Predictions from the ASTRID Simulation
- Probing the quasars in a universe with IllustrisTNG physics: Impact of gas-based black hole seeding models
- A unified accretion disc model for supermassive black holes in galaxy formation simulations: method and implementation
- A Survey for High-redshift Gravitationally Lensed Quasars and Close Quasars Pairs. I. the Discoveries of an Intermediately-lensed Quasar and a Kpc-scale Quasar Pair at
- Multimessenger study of merging massive black holes in the OBELISK simulation: gravitational waves, electromagnetic counterparts, and their link to galaxy and black hole populations
- Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers
- Discovery of merging twin quasars at z = 6.05
- RABBITS -- I. The crucial role of nuclear star formation in driving the coalescence of supermassive black hole binaries
- The impact of black hole seeding in cosmological simulations
- Dynamics and spin alignment in massive, gravito-turbulent circumbinary discs around supermassive black hole binaries
- The Bardeen-Petterson effect, disk breaking, and the spin orientations of supermassive black-hole binaries
- RABBITS -- II. The impact of AGN feedback on coalescing supermassive black holes in disc and elliptical galaxy mergers
- Identifying supermassive black hole recoil in elliptical galaxies
- A Heavy Seed Black Hole Mass Function at High Redshift -- Prospects for LISA
- Tracking on-the-fly massive black hole binary evolution and coalescence in galaxy simulations: RAMCOAL
- First Light and Reionization Epoch Simulations (FLARES) -- XV: The physical properties of super-massive black holes and their impact on galaxies in the early universe
- Premature supermassive black hole mergers in cosmological simulations of structure formation
- Probing massive black holes with gravitational waves
- Hidden in Pixels. I. Discovery of dual "little red dots" indicates excess clustering on kilo-parsec scales
- Multi-wavelength properties of LISA detectable events