We constrain the distribution of merging compact binaries across the celestial sphere using the GWTC-3 catalog from the LIGO-Virgo-KAGRA Collaborations' (LVK) third observing run. With 63 confident detections from O3, we constrain the relative variability (standard deviation) of the rate density across the sky to be ≲16% at 90\% confidence assuming the logarithm of the rate density is described by a Gaussian random field with correlation length ≥10∘. This tightens to ≲3.5% when the correlation length is ≥20∘. While the new O3 data provides the tightest constraints on anisotropies available to-date, we do not find overwhelming evidence in favor of isotropy, either. A simple counting experiment favors an isotropic distribution by a factor of Baniiso=3.7, which is nonetheless an improvement of more than a factor of two compared to analogous analyses based on only the first and second observing runs of the LVK.
@article{arxiv.2207.05792,
title = {An Isotropy Measurement with Gravitational Wave Observations},
author = {Reed Essick and Will M. Farr and Maya Fishbach and Daniel E. Holz and Erik Katsavounidis},
journal= {arXiv preprint arXiv:2207.05792},
year = {2023}
}