Associating Host Galaxy Candidates to Massive Black Hole Binaries resolved by Pulsar Timing Arrays
arXiv:1812.02670 · doi:10.1093/mnras/stz420
Abstract
We propose a novel methodology to select host galaxy candidates of future pulsar timing array (PTA) detections of resolved gravitational waves (GWs) from massive black hole binaries (MBHBs). The method exploits the physical dependence of the GW amplitude on the MBHB chirp mass and distance to the observer, together with empirical MBH mass-host galaxy correlations, to rank potential host galaxies in the mass-redshift plane. This is coupled to a null-stream based likelihood evaluation of the GW amplitude and sky position in a Bayesian framework that assigns to each galaxy a probability of hosting the MBHB generating the GW signal. We test our algorithm on a set of realistic simulations coupling the likely properties of the first PTA resolved GW signal to synthetic all-sky galaxy maps. For a foreseeable PTA sky-localization precision of 100 squared degrees, we find that the GW source is hosted with 50% (90%) probability within a restricted number of <50 (<500) potential hosts. These figures are orders of magnitude smaller than the total number of galaxies within the PTA sky error-box, enabling extensive electromagnetic follow-up campaigns on a limited number of targets.
12 pages, 10 figures
References in corpus (30)
- The NumPy array: a structure for efficient numerical computation
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- The Gaia mission
- Multi-messenger Observations of a Binary Neutron Star Merger
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- The James Webb Space Telescope
- Laser Interferometer Space Antenna
- Properties of galaxies reproduced by a hydrodynamic simulation
- A gravitational-wave standard siren measurement of the Hubble constant
- The Electromagnetic Counterpart of the Binary Neutron Star Merger LIGO/VIRGO GW170817. IV. Detection of Near-infrared Signatures of r-process Nucleosynthesis with Gemini-South
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- Galaxy Merger Morphologies and Time-Scales from Simulations of Equal-Mass Gas-Rich Disc Mergers
- The NANOGrav 11-year Data Set: Pulsar-timing Constraints On The Stochastic Gravitational-wave Background
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- 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
- A standard siren measurement of the Hubble constant from GW170817 without the electromagnetic counterpart
- The Local Nanohertz Gravitational-Wave Landscape From Supermassive Black Hole Binaries
- Measuring the parameters of massive black hole binary systems with Pulsar Timing Array observations of gravitational waves
- Stellar mass estimates in early-type galaxies: procedures, uncertainties and models dependence
- A population of luminous accreting black holes with hidden mergers
- Single Sources in the Low-Frequency Gravitational Wave Sky: properties and time to detection by pulsar timing arrays
- Prospects for gravitational-wave detection and supermassive black hole astrophysics with pulsar timing arrays
- The electromagnetic chirp of a compact binary black hole: a phase template for the gravitational wave inspiral
- Detection and localization of single-source gravitational waves with pulsar timing arrays
- Pulsar Timing Constraints on the Fermi Massive Black-Hole Binary Blazar Population
- Optimizing Pulsar Timing Arrays Observations for Detection and Characterization of Low-Frequency Gravitational Wave Sources
- Gravitational waves from supermassive black hole binaries in ultra-luminous infrared galaxies
- Null stream analysis of Pulsar Timing Array data: localisation of resolvable gravitational wave sources
- Null-stream pointing with pulsar timing arrays
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- The Quest for Dual and Binary Supermassive Black Holes: A Multi-Messenger View
- From Bright Binaries To Bumpy Backgrounds: Mapping Realistic Gravitational Wave Skies With Pulsar-Timing Arrays
- The NANOGrav Program for Gravitational Waves and Fundamental Physics
- Quasars with Periodic Variability: Capabilities and Limitations of Bayesian Searches for Supermassive Black Hole Binaries in Time-Domain Surveys
- Identifying Host Galaxies of Supermassive Black Hole Binaries Found by PTAs
- Unveiling the hosts of parsec-scale massive black hole binaries: morphology and electromagnetic signatures
- On Detecting Nearby Nano-Hertz Gravitational Wave Sources via Pulsar Timing Arrays
- Resolving the nano-Hz gravitational wave sky: the detectability of eccentric binaries with PTA experiments
- Signatures of Massive Black Hole Merger Host Galaxies from Cosmological Simulations I: Unique Galaxy Morphologies in Imaging
- Separating deterministic and stochastic gravitational wave signals in realistic pulsar timing array datasets
- Host Galaxy Demographics Of Individually Detectable Supermassive Black-hole Binaries with Pulsar Timing Arrays
- Signatures of Massive Black Hole Merger Host Galaxies from Cosmological Simulations II: Unique Stellar Kinematics in Integral Field Unit Spectroscopy
- Unveiling the existence of nontensorial gravitational-wave polarizations from individual supermassive black hole binaries with pulsar timing arrays
- Detectability of dark matter density distribution via gravitational waves from binary black holes in the Galactic center
- The Host Galaxies of PTA Sources: Converting Supermassive BH Binary Parameters into EM Observables
- Realistic assessment of a single gravitational wave source localization taking into account precise pulsar distances with pulsar timing arrays
- Fast Bayesian analysis of individual binaries in pulsar timing array data