English

Numerical relativity surrogate model with memory effects and post-Newtonian hybridization

General Relativity and Quantum Cosmology 2024-01-02 v2

Abstract

Numerical relativity simulations provide the most precise templates for the gravitational waves produced by binary black hole mergers. However, many of these simulations use an incomplete waveform extraction technique -- extrapolation -- that fails to capture important physics, such as gravitational memory effects. Cauchy-characteristic evolution (CCE), by contrast, is a much more physically accurate extraction procedure that fully evolves Einstein's equations to future null infinity and accurately captures the expected physics. In this work, we present a new surrogate model, NRHybSur3dq8_\_CCE, built from CCE waveforms that have been mapped to the post-Newtonian (PN) BMS frame and then hybridized with PN and effective one-body (EOB) waveforms. This model is trained on 102 waveforms with mass ratios q8q\leq8 and aligned spins χ1z,χ2z[0.8,0.8]\chi_{1z}, \, \chi_{2z} \in \left[-0.8, 0.8\right]. The model spans the entire LIGO-Virgo-KAGRA (LVK) frequency band (with flow=20Hzf_{\text{low}}=20\text{Hz}) for total masses M2.25MM\gtrsim2.25M_{\odot} and includes the 4\ell\leq4 and (,m)=(5,5)(\ell,m)=(5,5) spin-weight 2-2 spherical harmonic modes, but not the (3,1)(3,1), (4,2)(4,2) or (4,1)(4,1) modes. We find that NRHybSur3dq8_\_CCE can accurately reproduce the training waveforms with mismatches 2×104\lesssim2\times10^{-4} for total masses 2.25MM300M2.25M_{\odot}\leq M\leq300M_{\odot} and can, for a modest degree of extrapolation, capably model outside of its training region. Most importantly, unlike previous waveform models, the new surrogate model successfully captures memory effects.

Cite

@article{arxiv.2306.03148,
  title  = {Numerical relativity surrogate model with memory effects and post-Newtonian hybridization},
  author = {Jooheon Yoo and Keefe Mitman and Vijay Varma and Michael Boyle and Scott E. Field and Nils Deppe and François Hébert and Lawrence E. Kidder and Jordan Moxon and Harald P. Pfeiffer and Mark A. Scheel and Leo C. Stein and Saul A. Teukolsky and William Throwe and Nils L. Vu},
  journal= {arXiv preprint arXiv:2306.03148},
  year   = {2024}
}

Comments

14 pages, 11 figures. Accepted for publication in PRD

R2 v1 2026-06-28T10:57:04.821Z