The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
arXiv:2005.09010 · doi:10.1093/mnras/staa2361
Abstract
Massive black hole binaries (MBHBs) form as a consequence of galaxy mergers. However, it is still unclear whether they typically merge within a Hubble time, and how accretion may affect their evolution. These questions will be addressed by pulsar timing arrays (PTAs), which aim to detect the GW background (GWB) emitted by MBHBs during the last Myrs of inspiral. Here we investigate the influence of differential accretion on MBHB merger rates, chirp masses and the resulting GWB spectrum. We evolve a MBHB sample from the Illustris hydrodynamic cosmological simulation using semi-analytic models and for the first time self-consistently evolve their masses with binary accretion models. In all models, MBHBs coalesce with median total masses up to , up to times larger than in models neglecting accretion. In our model with the largest plausible impact, the median mass ratio of coalescing MBHBs increases by a factor , the coalescence rate by , and the GWB amplitude by a factor , yielding a dimensionless GWB strain . Our model that favours accretion onto the primary MBH reduces the median mass ratio of coalescing MBHBs by a factor of , and yields a GWB amplitude . This is nearly indistinguishable from our model neglecting accretion, despite higher MBHB masses at coalescence. \textbf{We further predict binary separation and mass ratio distributions of stalled MBHBs in the low-redshift universe, and find that these depend sensitively on binary accretion models. This presents the potential for combined EM and GW observational constraints on merger rates and accretion models of MBHB populations.}
Updated to appropriately reference previous work by Sesana & Barausse et al
References in corpus (22)
- The NumPy array: a structure for efficient numerical computation
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Properties of galaxies reproduced by a hydrodynamic simulation
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- The Illustris simulation: the evolving population of black holes across cosmic time
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- A Compact Supermassive Binary Black Hole System
- A massive binary black-hole system in OJ287 and a test of general relativity
- A possible close supermassive black-hole binary in a quasar with optical periodicity
- The Population of Viscosity- and Gravitational Wave-Driven Supermassive Black Hole Binaries Among Luminous AGN
- Gravitational waves from resolvable massive black hole binary systems and observations with Pulsar Timing Arrays
- Expected properties of the first gravitational wave signal detected with pulsar timing arrays
- 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
- Circumbinary Accretion from Finite and Infinite Disks
- The Effect of Orbital Eccentricity on Gravitational Wave Background Radiation from Supermassive Black Hole Binaries
- 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
- Spitzer Observations of the Predicted Eddington Flare from Blazar OJ 287
- Multi-Messenger Astrophysics with Pulsar Timing Arrays
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- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- Common-red-signal analysis with 24-yr high-precision timing of the European Pulsar Timing Array: Inferences in the stochastic gravitational-wave background search
- A declining major merger fraction with redshift in the local Universe from the largest-yet catalog of major and minor mergers in SDSS
- Exploring Proxies for the Supermassive Black Hole Mass Function: Implications for Pulsar Timing Arrays
- An estimate of the stochastic gravitational wave background from the MassiveBlackII simulation