Angular Resolution of the Search for Anisotropic Stochastic Gravitational-Wave Background with Terrestrial Gravitational-Wave Detectors
arXiv:2203.17141 · doi:10.1103/PhysRevD.106.023010
Abstract
We consider an anisotropic search for the stochastic gravitational-wave (GW) background by decomposing the gravitational-wave sky into its spherical harmonics components. Previous analyses have used the diffraction limit to define the highest-order spherical harmonics components used in this search. We investigate whether the angular resolution of this search is indeed diffraction-limited by testing our ability to detect and localize simulated GW signals. We show that while using low-order spherical harmonics modes is optimal for initially detecting GW sources, the detected sources can be better localized with higher-order spherical harmonics than expected based on the diffraction limit argument. Additionally, we discuss how the ability to recover simulated GW sources is affected by the number of detectors in the network, the frequency range over which the search is performed, and the method by which the covariance matrix of the GW skymap is regularized. While we primarily consider point-source signals in this study, we briefly apply our methodology to spatially-extended sources and discuss potential future modifications of our analysis for such signals.
References in corpus (12)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- GW190521: A Binary Black Hole Merger with a Total Mass of
- Observation of gravitational waves from two neutron star-black hole coalescences
- The stochastic gravitational-wave background from massive black hole binary systems: implications for observations with Pulsar Timing Arrays
- Upper Limits on the Isotropic Gravitational-Wave Background from Advanced LIGO's and Advanced Virgo's Third Observing Run
- Directional limits on persistent gravitational waves from Advanced LIGO's first observing run
- Search for anisotropic gravitational-wave backgrounds using data from Advanced LIGO and Advanced Virgo's first three observing runs
- Implications for First-Order Cosmological Phase Transitions from the Third LIGO-Virgo Observing Run
- Measuring neutron-star ellipticity with measurements of the stochastic gravitational-wave background
- Upper limits on persistent gravitational waves using folded data and the full covariance matrix from Advanced LIGOs first two observing runs
Cited by in corpus (9)
- Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background
- Measurement of the Cross-Correlation Angular Power Spectrum Between the Stochastic Gravitational Wave Background and Galaxy Over-Density
- Angular power spectra of anisotropic stochastic gravitational wave background: developing statistical methods and analyzing data from ground-based detectors
- Bayesian parameter estimation for targeted anisotropic gravitational-wave background
- Untargeted Bayesian search of anisotropic gravitational-wave backgrounds through the analytical marginalization of the posterior
- Model-independent search for anisotropies in stochastic gravitational-wave backgrounds and application to LIGO-Virgo's first three observing Runs
- Unbiased estimation of gravitational-wave anisotropies from noisy data
- Efficient Search for Detection Candidates Using a Peak Finder Strategy for All-Sky-All-Frequency Gravitational Wave Radiometer
- On Validating Angular Power Spectral Models for the Stochastic Gravitational-Wave Background Without Distributional Assumptions