Expected properties of the first gravitational wave signal detected with pulsar timing arrays
arXiv:1503.04803 · doi:10.1093/mnras/stv1098
Abstract
In this paper we attempt to investigate the nature of the first gravitational wave (GW) signal to be detected by pulsar timing arrays (PTAs): will it be an individual, resolved supermassive black hole binary (SBHB), or a stochastic background made by the superposition of GWs produced by an ensemble of SBHBs? To address this issue, we analyse a broad set of simulations of the cosmological population of SBHBs, that cover the entire parameter space allowed by current electromagnetic observations in an unbiased way. For each simulation, we construct the expected GW signal and identify the loudest individual sources. We then employ appropriate detection statistics to evaluate the relative probability of detecting each type of source as a function of time for a variety of PTAs; we consider the current International PTA, and speculate into the era of the Square Kilometre Array. The main properties of the first detectable individual SBHBs are also investigated. Contrary to previous work, we cast our results in terms of the detection probability (DP), since the commonly adopted criterion based on a signal-to-noise ratio threshold is statistic-dependent and may result in misleading conclusions for the statistics adopted here. Our results confirm quantitatively that a stochastic signal is more likely to be detected first (with between 75 to 93 per cent probability, depending on the array), but the DP of single-sources is not negligible. Our framework is very flexible and can be easily extended to more realistic arrays and to signal models including environmental coupling and SBHB eccentricity.
18 pages, 7 figures, published in MNRAS
References in corpus (25)
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- A possible close supermassive black-hole binary in a quasar with optical periodicity
- The stellar masses of 25000 galaxies at 0.2<z<1.0 estimated by the COMBO-17 survey
- A calibration of the relation between the abundance of close galaxy pairs and the rate of galaxy mergers
- Gravitational Waves from Core Collapse Supernovae
- Measuring the parameters of massive black hole binary systems with Pulsar Timing Array observations of gravitational waves
- Self consistent model for the evolution of eccentric massive black hole binaries in stellar environments: implications for gravitational wave observations
- Mapping gravitational-wave backgrounds using methods from CMB analysis: Application to pulsar timing arrays
- Improved Upper Limits on the Stochastic Gravitational-Wave Background from 2009-2010 LIGO and Virgo Data
- Time-domain Implementation of the Optimal Cross-Correlation Statistic for Stochastic Gravitational-Wave Background Searches in Pulsar Timing Data
- A Periodically Varying Luminous Quasar at z=2 from the Pan-STARRS1 Medium Deep Survey: A Candidate Supermassive Black Hole Binary in the Gravitational Wave-Driven Regime
- Prospects for gravitational-wave detection and supermassive black hole astrophysics with pulsar timing arrays
- Binary super-massive black hole environments diminish the gravitational-wave signal in the pulsar timing band
- Constraining the Solution to the Last Parsec Problem with Pulsar Timing
- The Effect of Gas Physics on the Halo Mass Function
- First all-sky search for continuous gravitational waves from unknown sources in binary systems
- Detection and localization of single-source gravitational waves with pulsar timing arrays
- Estimating the sensitivity of pulsar timing arrays
- Gravitational wave background from rotating neutron stars
- Second Einstein Telescope Mock Science Challenge : Detection of the GW Stochastic Background from Compact Binary Coalescences
- Pulsar Timing Array Observations of Massive Black Hole Binaries
- Detecting a Stochastic Gravitational-Wave Background: The Overlap Reduction Function
- A coherent method for the detection and estimation of continuous gravitational wave signals using a pulsar timing array
- Gravitational wave astronomy with the SKA
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- 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
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- On the evidence for a common-spectrum process in the search for the nanohertz gravitational-wave background with the Parkes Pulsar Timing Array
- The second data release from the European Pulsar Timing Array I. The dataset and timing analysis
- The Quest for Dual and Binary Supermassive Black Holes: A Multi-Messenger View
- The NANOGrav 15-year Data Set: Bayesian Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries
- The NANOGrav 15-Year Data Set: Detector Characterization and Noise Budget
- Astrophysics Milestones For Pulsar Timing Array Gravitational Wave Detection
- Electromagnetic Counterparts to Massive Black Hole Mergers
- The NANOGrav 12.5-year Data Set: Wideband Timing of 47 Millisecond Pulsars
- Pulsar Timing Probes of Primordial Black Holes and Subhalos
- The MeerKAT Pulsar Timing Array: The first search for gravitational waves with the MeerKAT radio telescope
- From Bright Binaries To Bumpy Backgrounds: Mapping Realistic Gravitational Wave Skies With Pulsar-Timing Arrays
- First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes
- Massive black hole binary systems and the NANOGrav 12.5 year results
- The Need For Speed: Rapid Refitting Techniques for Bayesian Spectral Characterization of the Gravitational Wave Background Using PTAs
- Variance of the Hellings-Downs Correlation
- Massive black hole evolution models confronting the n-Hz amplitude of the stochastic gravitational wave background
- Simulations of Axion Minihalos
- Searching for continuous Gravitational Waves in the second data release of the International Pulsar Timing Array
- The NANOGrav 12.5-year data set: Search for Non-Einsteinian Polarization Modes in theGravitational-Wave Background
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- Dynamical evolution of cosmic supermassive binary black holes and their gravitational wave radiation
- Probing Small-Scale Power Spectra with Pulsar Timing Arrays
- Multi-messenger Time-domain Signatures Of Supermassive Black Hole Binaries
- Common-spectrum process versus cross-correlation for gravitational-wave searches using pulsar timing arrays
- Detection and localization of continuous gravitational waves with pulsar timing arrays: the role of pulsar terms
- On the usefulness of existing Solar-wind models for pulsar timing corrections
- Searching for Isotropic Stochastic Gravitational-Wave Background in the International Pulsar Timing Array Second Data Release
- A quasar-based supermassive black hole binary population model: implications for the gravitational-wave background
- Dark Matter Microhalos From Simplified Models
- Signatures of the Many Supermassive Black Hole Mergers in a Cosmologically Forming Massive Early-Type Galaxy
- The effect of differential accretion on the Gravitational Wave Background and the present day MBH Binary population
- Evaluating the prevalence of spurious correlations in pulsar timing array datasets
- The NANOGrav 12.5-year Data Set: Bayesian Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries
- The NANOGrav 11yr Data Set: Limits on Supermassive Black Hole Binaries in Galaxies within 500Mpc
- Constraining the Stochastic Gravitational Wave Background with Photometric Surveys
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- Quasars with Periodic Variability: Capabilities and Limitations of Bayesian Searches for Supermassive Black Hole Binaries in Time-Domain Surveys
- The Nanohertz Gravitational Wave Astronomer
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- Quality over Quantity: Optimizing pulsar timing array analysis for stochastic and continuous gravitational wave signals
- Electromagnetic signatures from accreting massive black hole binaries in time domain photometric surveys
- Multi-messenger Approaches to Supermassive Black Hole Binary Detection and Parameter Estimation: Implications for Nanohertz Gravitational Wave Searches with Pulsar Timing Arrays
- Constraining alternative polarization states of gravitational waves from individual black hole binaries using pulsar timing arrays
- Considerations for the Observability of Kinematically Offset Binary AGN
- Implications of cosmologically coupled black holes for pulsar timing arrays
- Frequency space derivation of linear and non-linear memory gravitational wave signals from eccentric binary orbits
- Disentangling Multiple Stochastic Gravitational Wave Background Sources in PTA Datasets
- Exploring Proxies for the Supermassive Black Hole Mass Function: Implications for Pulsar Timing Arrays
- Status Report on Global Pulsar-Timing-Array Efforts to Detect Gravitational Waves
- Identifying Host Galaxies of Supermassive Black Hole Binaries Found by PTAs
- The NANOGrav 15 yr Data Set: Looking for Signs of Discreteness in the Gravitational-wave Background
- The MeerKAT Pulsar Timing Array: Maps of the gravitational-wave sky with the 4.5 year data release
- Slaying Axion-Like Particles via Gravitational Waves and Primordial Black Holes from Supercooled Phase Transition
- On using inspiralling supermassive binary black holes in the PTA frequency band as standard sirens to constrain dark energy
- The NANOGrav 12.5-year data set: A computationally efficient eccentric binary search pipeline and constraints on an eccentric supermassive binary candidate in 3C 66B
- Spatial and Spectral Characterization of the Gravitational-wave Background with the PTA Optimal Statistic
- Unveiling the hosts of parsec-scale massive black hole binaries: morphology and electromagnetic signatures
- Pulsar Timing Array Experiments
- Using Gravitational Wave Parallax to Measure the Hubble Parameter with Pulsar Timing Arrays
- Testing strengths, limitations and biases of current Pulsar Timing Arrays detection analyses on realistic data
- On Detecting Nearby Nano-Hertz Gravitational Wave Sources via Pulsar Timing Arrays
- Review of Pulsar Timing Array for Gravitational Wave Research
- Efficient Gravitational Wave Searches with Pulsar Timing Arrays using Hamiltonian Monte Carlo
- Macroscopic Dark Matter Detection with Gravitational Wave Experiments
- Gravitational Wave Statistics for Pulsar Timing Arrays: Examining Bias from Using a Finite Number of Pulsars
- Resolving the nano-Hz gravitational wave sky: the detectability of eccentric binaries with PTA experiments
- Precision of localization of single gravitational-wave source with pulsar timing array
- Separating deterministic and stochastic gravitational wave signals in realistic pulsar timing array datasets
- Predictions for LISA and PTA based on SHARK galaxy simulations
- The ASTRID Simulation at z=0: From Massive Black Holes to Large-scale Structure
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- Parameter-Estimation Biases for Eccentric Supermassive Binary Black Holes in Pulsar Timing Arrays: Biases Caused by Ignored Pulsar Terms
- Efficient Bayesian inference and model selection for continuous gravitational waves in pulsar timing array data
- Host Galaxy Demographics Of Individually Detectable Supermassive Black-hole Binaries with Pulsar Timing Arrays
- Coincident Multimessenger Bursts from Eccentric Supermassive Binary Black Holes
- Measuring anisotropies in the PTA band with cross-correlations
- Reading signatures of supermassive binary black holes in pulsar timing array observations
- What do gravitational wave detectors say about polymer quantum effects?
- Astrophysics with the Laser Interferometer Space Antenna
- Regularizing the Pulsar Timing Array likelihood: A path towards Fourier Space
- Is your stochastic signal really detectable?
- Impact of the observation frequency coverage on the significance of a gravitational wave background detection in PTA data
- Implications for Pulsar Timing Arrays of Sub-solar Black Hole Detections: From LVK to Einstein Telescope and Cosmic Explorer
- Unravelling the formation of the first supermassive black holes with the SKA pulsar timing array
- Pulsar timing and polarimetry: results and perspectives
- Unveiling the existence of nontensorial gravitational-wave polarizations from individual supermassive black hole binaries with pulsar timing arrays
- Effects of eccentricity on accreting binary black holes: MHD simulations in full GR reveal novel periodicities in jet power and synchrotron spectra
- Dissecting the nanoHz gravitational wave sky: frequency-correlated anisotropy induced by eccentric supermassive black hole binaries
- Precision Timing of PSR J0437-4715 with the IAR Observatory and Implications for Low-Frequency Gravitational Wave Source Sensitivity
- 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
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- Resolving Individual Signals in the Presence of Stochastic Background in Future Pulsar Timing Arrays
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- Finite Populations & Finite Time: The Non-Gaussianity of a Gravitational Wave Background
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