Implications of the pulsar timing array detections for massive black hole mergers in the LISA band
arXiv:2307.12245 · doi:10.1103/PhysRevD.108.103034
Abstract
The recent evidence of a stochastic background of gravitational waves in the nHz band by pulsar-timing array (PTA) experiments has shed new light on the formation and evolution of massive black hole binaries with masses --. The PTA data are consistent with a population of such binaries merging efficiently after the coalescence of their galactic hosts, and presenting masses slightly larger than previously expected. This momentous discovery calls for investigating the prospects of detecting the smaller (--) massive black hole binaries targeted by the Laser Interferometer Space Antenna (LISA). By using semi-analytic models for the formation and evolution of massive black hole binaries calibrated against the PTA results, we find that LISA will observe at least a dozen and up to thousands of black hole binaries during its mission duration. The minimum number of detections rises to if one excludes models that only marginally reproduce the quasar luminosity function at . We also assess LISA's parameter estimation capabilities with state-of-the-art waveforms including higher modes and realistic instrumental response, and find that the masses, sky position, and distance will typically be estimated to within respectively 1%, 10 square degrees, and 10% for the detected systems (assuming a 4-year mission).
17 pages, 7 figures. PRD in press
References in corpus (27)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- 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: Search for Signals from New Physics
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- The evolution of massive black hole seeds
- Generating Dark Matter Halo Merger Trees
- Super-Critical Growth of Massive Black Holes from Stellar-Mass Seeds
- An actively accreting massive black hole in the dwarf starburst galaxy Henize 2-10
- Interaction of massive black hole binaries with their stellar environment: I. Ejection of hypervelocity stars
- The imprint of massive black hole formation models on the LISA data stream
- Massive binary black holes in galactic nuclei and their path to coalescence
- Reconstructing the massive black hole cosmic history through gravitational waves
- Reducing the weak lensing noise for the gravitational wave Hubble diagram using the non-Gaussianity of the magnification distribution
- The Indian Pulsar Timing Array: First data release
- The second data release from the European Pulsar Timing Array: VI. Challenging the ultralight dark matter paradigm
- The formation of hot gaseous haloes around galaxies
- Massive black hole binaries in LISA: multimessenger prospects and electromagnetic counterparts
- Gravitational-wave parameter estimation with gaps in LISA: a Bayesian data augmentation method
- The imprint of massive black-hole mergers on the correlation between nuclear clusters and their host galaxies
- Effect of data gaps on the detectability and parameter estimation of massive black hole binaries with LISA
- On the detectability of higher harmonics with LISA
- Rates of capture of stars by supermassive black holes in non-spherical galactic nuclei
- On the LISA science performance in observations of short-lived signals from massive black hole binary coalescences
Cited by in corpus (17)
- Scalar induced gravitational waves in light of Pulsar Timing Array data
- Nonlinear quasinormal mode detectability with next-generation gravitational wave detectors
- Prospects for Taiji to detect a gravitational-wave background from cosmic strings
- Constraining string cosmology with the gravitational-wave background using the NANOGrav 15-year data set
- Detecting a Gravitational-Wave Background from Inflation with Null Energy Condition Violation: Prospects for Taiji
- Interplay between the muon anomaly and the PTA nHZ gravitational waves from domain walls in next-to minimal supersymmetric standard model
- Reading signatures of supermassive binary black holes in pulsar timing array observations
- Systematic bias in LISA ringdown analysis due to waveform inaccuracy
- Simulation-based population inference of LISA's Galactic binaries: Bypassing the global fit
- Reconciling PTA and JWST and preparing for LISA with POMPOCO: a Parametrisation Of the Massive black hole POpulation for Comparison to Observations
- Detectability of Gravitational-Wave Memory with LISA: A Bayesian Approach
- Reconstructing the LISA massive black hole binary population via iterative kernel density estimation
- Detection for Intermediate-mass Binary Black Holes in Population III Star Clusters with TianQin
- Black holes as telescopes: Discovering supermassive binaries through quasi-periodic lensed starlight
- Systematic biases in parameter estimation on LISA binaries. II. The effect of excluding higher harmonics for spin-aligned, high-mass binaries
- Strong-lensing rates of massive black hole binaries in LISA
- Gravitational lensing of gravitational waves: universal characteristics of strongly lensed memory waveforms