Limits on anisotropy in the nanohertz stochastic gravitational-wave background
arXiv:1506.08817 · doi:10.1103/PhysRevLett.115.041101
Abstract
The paucity of observed supermassive black hole binaries (SMBHBs) may imply that the gravitational wave background (GWB) from this population is anisotropic, rendering existing analyses sub-optimal. We present the first constraints on the angular distribution of a nanohertz stochastic GWB from circular, inspiral-driven SMBHBs using the European Pulsar Timing Array data [Desvignes et al. (in prep.)]. Our analysis of the GWB in the nHz band shows consistency with isotropy, with the strain amplitude in spherical harmonic multipoles of the monopole value. We expect that these more general techniques will become standard tools to probe the angular distribution of source populations.
6 pages, 2 figures, 1 table. Accepted for publication in Physical Review Letters
References in corpus (16)
- TEMPO2, a new pulsar timing package. I: Overview
- The Five-Hundred-Meter Aperture Spherical Radio Telescope (FAST) Project
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- Gravitational waves from resolvable massive black hole binary systems and observations with Pulsar Timing Arrays
- Gravitational-Wave Stochastic Background from Kinks and Cusps on Cosmic Strings
- Assessing the Role of Spin Noise in the Precision Timing of Millisecond Pulsars
- Expected properties of the first gravitational wave signal detected with pulsar timing arrays
- European Pulsar Timing Array Limits on Continuous Gravitational Waves from Individual Supermassive Black Hole Binaries
- Measuring the parameters of massive black hole binary systems with Pulsar Timing Array observations of gravitational waves
- Mapping gravitational-wave backgrounds using methods from CMB analysis: Application to pulsar timing arrays
- New advances in the Gaussian-process approach to pulsar-timing data analysis
- Low-rank approximations for large stationary covariance matrices, as used in the Bayesian and generalized-least-squares analysis of pulsar-timing data
- The effect of small inter-pulsar distance variations in stochastic gravitational wave background searches with Pulsar Timing Arrays
- Detecting a Stochastic Gravitational-Wave Background: The Overlap Reduction Function
- Gravitational wave astronomy with the SKA
Cited by in corpus (49)
- Black holes, gravitational waves and fundamental physics: a roadmap
- Detection methods for stochastic gravitational-wave backgrounds: a unified treatment
- High-precision timing of 42 millisecond pulsars with the European Pulsar Timing Array
- The International Pulsar Timing Array: First Data Release
- The Astrophysics of Nanohertz Gravitational Waves
- Common-red-signal analysis with 24-yr high-precision timing of the European Pulsar Timing Array: Inferences in the stochastic gravitational-wave background search
- Massive Black Hole Binary Mergers in Dynamical Galactic Environments
- European Pulsar Timing Array Limits on Continuous Gravitational Waves from Individual Supermassive Black Hole Binaries
- Gravitational waves induced by scalar perturbations as probes of the small-scale primordial spectrum
- New limits on cosmic strings from gravitational wave observation
- The Local Nanohertz Gravitational-Wave Landscape From Supermassive Black Hole Binaries
- Anisotropy of the astrophysical gravitational wave background: analytic expression of the angular power spectrum and correlation with cosmological observations
- First predictions of the angular power spectrum of the astrophysical gravitational wave background
- The second data release from the European Pulsar Timing Array II. Customised pulsar noise models for spatially correlated gravitational waves
- From Bright Binaries To Bumpy Backgrounds: Mapping Realistic Gravitational Wave Skies With Pulsar-Timing Arrays
- Massive BH Binaries as Periodically-Variable AGN
- Projection effects on the observed angular spectrum of the astrophysical stochastic gravitational wave background
- The noise properties of 42 millisecond pulsars from the European Pulsar Timing Array and their impact on gravitational wave searches
- Towards Robust Gravitational Wave Detection with Pulsar Timing Arrays
- Pulsar-timing arrays, astrometry, and gravitational waves
- Inflation and Early Dark Energy with a Stage II Hydrogen Intensity Mapping Experiment
- The signal of the stochastic gravitational wave background and the angular correlation of its energy density
- Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background
- Polarization of a stochastic gravitational wave background through diffusion by massive structures
- Fisher formalism for anisotropic gravitational-wave background searches with pulsar timing arrays
- Astrophysical constraints on massive black hole binary evolution from Pulsar Timing Arrays
- The search for anisotropy in the gravitational-wave background with pulsar-timing arrays
- Very fast stochastic gravitational wave background map making using folded data
- Versatile Directional Searches for Gravitational Waves with Pulsar Timing Arrays
- The NANOGrav Program for Gravitational Waves and Fundamental Physics
- Insights into searches for anisotropies in the nanohertz gravitational-wave background
- Mapping the Gravitational-wave Sky with LISA: A Bayesian Spherical Harmonic Approach
- Constraints on Individual Supermassive Black Hole Binaries from Pulsar Timing Array Limits on Continuous Gravitational Waves
- Joint search for isolated sources and an unresolved confusion background in pulsar timing array data
- On the Amplitude and Stokes Parameters of a Stochastic Gravitational-Wave Background
- Anisotropies in the gravitational wave background as a probe of the cosmic string network
- Detecting nanohertz gravitational waves with pulsar timing arrays
- Pulsar Timing Perturbations from Galactic Gravitational Wave Bursts with Memory
- 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
- Null stream analysis of Pulsar Timing Array data: localisation of resolvable gravitational wave sources
- Pulsar Timing Array Experiments
- Radio pulsars: testing gravity and detecting gravitational waves
- Measuring kinematic anisotropies with pulsar timing arrays
- Co-evolution of supermassive black holes with galaxies from semi-analytic model: stochastic gravitational wave background and black hole clustering
- Astrometry meets Pulsar Timing Arrays: Synergies for Gravitational Wave Detection
- Searching for Anisotropy in the Gravitational Wave Background Using the Parkes Pulsar Timing Array
- Dissecting the nanohertz gravitational wave sky: Frequency-correlated anisotropy induced by eccentric supermassive black hole binaries
- Anisotropy of Nanohertz Gravitational Wave Background and Source Clustering from Supermassive Binary Black Holes Based on Cosmological Simulation