Polarization Birefringence and Waveform Systematics in GW231123
Abstract
GW231123 is a short, massive binary-black-hole event whose source properties show strong waveform dependence. We use this event to test gravitational-wave polarization birefringence, modeled as a frequency-dependent rotation of the tensor-polarization basis. Instead of sampling a distance-normalized coefficient directly, we sample the band-differential rotation with prior , and report the derived coefficient for comparison with standard propagation parametrizations. We analyze three waveform families: IMRPhenomXPHM (XPHM), IMRPhenomXO4a (XO4a), and NRSur7dq4. The derived posteriors are consistent with the general relativity value, giving upper limits for XPHM, XO4a, and NRSur7dq4, respectively. The directly sampled posterior remains broad, with , so the accumulated rotation across the analysis band is weakly constrained. The Bayes factors are waveform dependent: , , and , respectively. We therefore find no waveform-robust evidence for parity-violating propagation. The positive XO4a result is better interpreted as a waveform-dependent birefringence-like response associated with the mass-ratio--distance--spin degeneracy of this short high-mass event.
Cite
@article{arxiv.2605.16425,
title = {Polarization Birefringence and Waveform Systematics in GW231123},
author = {Tonghua Liu and Chenggang Shao and Kai Liao},
journal= {arXiv preprint arXiv:2605.16425},
year = {2026}
}
Comments
9 pages, 4 figures, comments are welcome