On the anisotropies of the cosmological gravitational-wave background from pulsar timing array observations
arXiv:2309.01643 · doi:10.1088/1475-7516/2024/02/016
Abstract
Significant evidence for a stochastic gravitational-wave background has recently been reported by several Pulsar Timing Array observations. These studies have shown that, in addition to astrophysical explanations based on supermassive black hole binaries (SMBHBs), cosmological origins are considered equally important sources for these signals. To further explore these cosmological sources, in this study, we discuss the anisotropies in the cosmological gravitational wave background (CGWB) in a model-independent way. Taking the North American Nanohertz Observatory for Gravitational Waves (NANOGrav) 15-year dataset as a benchmark, we estimate the angular power spectra of the CGWB and their cross-correlations with cosmic microwave background (CMB) fluctuations and weak gravitational lensing. We find that the NANOGrav 15-year data implies suppressed Sachs-Wolf (SW) effects in the CGBW spectrum, leading to a marginally negative cross-correlation with the CMB at large scales. This procedure is applicable to signals introduced by different early universe processes and is potentially useful for identifying unique features about anisotropies of CGWB from future space-based interferometers and astrometric measurements.
23 pages, 4 figures
References in corpus (38)
- The Gaia mission
- The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background
- Laser Interferometer Space Antenna
- Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array
- Science Case for the Einstein Telescope
- 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 Cosmic Linear Anisotropy Solving System (CLASS) I: Overview
- Upper Limits on the Isotropic Gravitational-Wave Background from Advanced LIGO's and Advanced Virgo's Third Observing Run
- The NANOGrav 15-year Data Set: Constraints on Supermassive Black Hole Binaries from the Gravitational Wave Background
- The NANOGrav 15-year Data Set: Observations and Timing of 68 Millisecond Pulsars
- Challenges and Opportunities of Gravitational Wave Searches at MHz to GHz Frequencies
- Cosmology with the Laser Interferometer Space Antenna
- The second data release from the European Pulsar Timing Array I. The dataset and timing analysis
- New Horizons for Fundamental Physics with LISA
- The Parkes Pulsar Timing Array Third Data Release
- The gravitational-wave background null hypothesis: Characterizing noise in millisecond pulsar arrival times with the Parkes Pulsar Timing Array
- Anisotropies and non-Gaussianity of the Cosmological Gravitational Wave Background
- The second data release from the European Pulsar Timing Array: IV. Implications for massive black holes, dark matter and the early Universe
- Characterizing the Cosmological Gravitational Wave Background Anisotropies and non-Gaussianity
- The second data release from the European Pulsar Timing Array II. Customised pulsar noise models for spatially correlated gravitational waves
- Projection effects on the observed angular spectrum of the astrophysical stochastic gravitational wave background
- The Imprint of Relativistic Particles on the Anisotropies of the Stochastic Gravitational-Wave Background
- CLASS_GWB: robust modeling of the astrophysical gravitational wave background anisotropies
- Detecting the anisotropic astrophysical gravitational wave background in the presence of shot noise through cross-correlations
- Primordial Non-Gaussianity and Anisotropies in Scalar-Induced Gravitational Waves
- Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background
- Probing pre-Recombination Physics by the Cross-Correlation of Stochastic Gravitational Waves and CMB Anisotropies
- Cross-correlating Astrophysical and Cosmological Gravitational Wave Backgrounds with the Cosmic Microwave Background
- Stochastic gravitational wave background: methods and Implications
- Circular Polarization of the Astrophysical Gravitational Wave Background
- Stochastic gravitational wave background constraints from Gaia DR3 astrometry
- Astrometric Effects of Gravitational Wave Backgrounds with non-Luminal Propagation Speeds
- Anisotropy of phase transition gravitational wave and its implication for primordial seeds of the Universe
- Unraveling Cosmological Anisotropies within Stochastic Gravitational Wave Backgrounds
- Adiabatic or Non-Adiabatic? Unraveling the Nature of Initial Conditions in the Cosmological Gravitational Wave Background
- Large Primordial Fluctuations in Gravitational Waves from Phase Transitions
Cited by in corpus (3)
- Complete analysis of the background and anisotropies of scalar-induced gravitational waves: primordial non-Gaussianity and considered
- Anisotropies of cosmological gravitational wave backgrounds in non-flat spacetime
- Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum