Massive Black Hole Binaries from the TNG50-3 Simulation: I. Coalescence and LISA Detection Rates
arXiv:2201.11088 · doi:10.3847/1538-4357/ac74b5
Abstract
We evaluate the cosmological coalescence and detection rates for massive black hole (MBH) binaries targeted by the gravitational wave observatory Laser Interferometer Space Antenna (LISA). Our calculation starts with a population of gravitationally unbound MBH pairs, drawn from the TNG50-3 cosmological simulation, and follows their orbital evolution from kpc scales all the way to coalescence using a semi-analytic model developed in our previous work. We find that for a majority of MBH pairs that coalesce within a Hubble time dynamical friction is the most important mechanism that determines their coalescence rate. Our model predicts a MBH coalescence rate < 0.45/ yr and a LISA detection rate < 0.34/ yr. Most LISA detections should originate from 10^6 - 10^6.8 solar masses MBHs in gas-rich galaxies at redshifts 1.6 < z < 2.4, and have a characteristic signal to noise ratio SNR ~ 100. We however find a dramatic reduction in the coalescence and detection rates, as well as the average SNR, if the effects of radiative feedback from accreting MBHs are taken into account. In this case, the MBH coalescence rate is reduced by 78% (to < 0.1/ yr), and the LISA detection rate is reduced by 94% (to 0.02/ yr), whereas the average SNR is ~ 10. We emphasize that our model provides a lower limit on the LISA detection rate, consistent with other works in the literature that draw their MBH pairs from cosmological simulations.
Accepted to ApJ, 20 pages, 10 figures
References in corpus (24)
- The James Webb Space Telescope
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- The Population of Viscosity- and Gravitational Wave-Driven Supermassive Black Hole Binaries Among Luminous AGN
- Interaction of massive black hole binaries with their stellar environment: I. Ejection of hypervelocity stars
- Viscous Hydrodynamics Simulations of Circumbinary Accretion Discs: Variability, Quasi-Steady State, and Angular Momentum Transfer
- Dynamics of triple black hole systems in hierarchically merging massive galaxies
- Hydrodynamic Torques in Circumbinary Accretion Disks
- Dynamical Friction of a Circular-Orbit Perturber in a Gaseous Medium
- Orbital Evolution of Equal-mass Eccentric Binaries due to a Gas Disk: Eccentric Inspirals and Circular Outspirals
- Black hole mergers from dwarf to massive galaxies with the NewHorizon and Horizon-AGN simulations
- Interactions between multiple supermassive black holes in galactic nuclei: a solution to the final parsec problem
- Collisionless loss-cone refilling: there is no final parsec problem
- Dynamical Friction Modeling of Massive Black Holes in Cosmological Simulations and Effects on Merger Rate Predictions
- ALMA observations of the kinematics and chemistry of disc formation
- The Pairing of Accreting Massive Black Holes in Multiphase Circumnuclear Disks: the Interplay between Radiative Cooling, Star Formation, and Feedback Processes
- The imprint of massive black-hole mergers on the correlation between nuclear clusters and their host galaxies
- The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
- The competing effect of gas and stars in massive black hole binaries evolution
- Linking the fate of massive black hole binaries to the active galactic nuclei luminosity function
- Massive Black Hole Mergers with Orbital Information: Predictions from the ASTRID Simulation
- Rates of capture of stars by supermassive black holes in non-spherical galactic nuclei
- The Detectability of Kiloparsec Scale Dual AGNs: The Impact of Galactic Structure and Black Hole Orbital Properties
- Predictions for LISA and PTA based on SHARK galaxy simulations
Cited by in corpus (17)
- Electromagnetic Counterparts to Massive Black Hole Mergers
- Modelling the accretion and feedback of supermassive black hole binaries in gas-rich galaxy mergers
- Properties and merger signatures of galaxies hosting LISA coalescing massive black hole binaries
- Signatures of Massive Black Hole Merger Host Galaxies from Cosmological Simulations I: Unique Galaxy Morphologies in Imaging
- Resolving the nano-Hz gravitational wave sky: the detectability of eccentric binaries with PTA experiments
- Testing alternative theories of gravity with space-based gravitational wave detectors
- RABBITS -- II. The impact of AGN feedback on coalescing supermassive black holes in disc and elliptical galaxy mergers
- Dynamical friction of a massive black hole in a turbulent gaseous medium
- Wandering and escaping: recoiling massive black holes in cosmological simulations
- Gravitational Waves from Massive Black Hole Mergers in ASTRID: Predictions for LISA
- Probing AGN jet precession with LISA
- Premature supermassive black hole mergers in cosmological simulations of structure formation
- Tracking on-the-fly massive black hole binary evolution and coalescence in galaxy simulations: RAMCOAL
- Signatures of Massive Black Hole Merger Host Galaxies from Cosmological Simulations II: Unique Stellar Kinematics in Integral Field Unit Spectroscopy
- Sky localization of space-based detectors with time-delay interferometry
- First Light And Reionization Epoch Simulations (FLARES) -- XIX: Supermassive black hole mergers in the early Universe and their environmental dependence
- Rapid sinking and efficient mergers of supermassive black holes in compact high-redshift galaxies