English

Polarization Birefringence and Waveform Systematics in GW231123

High Energy Astrophysical Phenomena 2026-05-19 v1

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 δbr=Δ(448Hz)Δ(20Hz)\delta_{\rm br}=\Delta(448\,\mathrm{Hz})-\Delta(20\,\mathrm{Hz}) with prior [π,π][-\pi,\pi], and report the derived coefficient βbrderived\beta_{\rm br}^{\rm derived} 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 90%90\% upper limits βbrderived90=0.378,0.097,0.273|\beta_{\rm br}^{\rm derived}|_{90}=0.378,\,0.097,\,0.273 for XPHM, XO4a, and NRSur7dq4, respectively. The directly sampled δbr\delta_{\rm br} posterior remains broad, with δbr902.8rad|\delta_{\rm br}|_{90}\simeq2.8\,\mathrm{rad}, so the accumulated rotation across the analysis band is weakly constrained. The Bayes factors are waveform dependent: lnBbr/GR=1.26±0.30\ln\mathcal{B}_{\rm br/GR}=-1.26\pm0.30, +3.64±0.28+3.64\pm0.28, and 0.86±0.29-0.86\pm0.29, 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.

Keywords

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