English

A multipolar effective one body waveform model for spin-aligned black hole binaries

General Relativity and Quantum Cosmology 2020-09-15 v2

Abstract

We introduce \TEOBiResumSM{}, an improved version of the effective-one-body (EOB) waveform model \TEOBResumS{} for spin-aligned, coalescing black hole binaries, that includes subdominant gravitational waveform modes completed through merger and ringdown. Beyond the dominant (,m)=(2,2)(\ell,|m|)=(2,2) one, the more robust multipoles all over the parameter space are: (2,1)(2,1), (3,3)(3,3), (3,2)(3,2), (4,4)(4,4) and (5,5)(5,5). The multipolar ringdown EOB waveform stems from suitably fitting many numerical relativity (NR) waveform data from the Simulating eXtreme Spacetimes (SXS) collaboration together with test-mass waveform data. Mode-mixing effects are not incorporated. The orbital (nonspinning) part of the multipolar waveform amplitudes includes test-mass results up to (relative) 6PN order and, for most modes,is Pad\'e resummed. The mm=odd waveform multipoles (up to =5\ell=5) incorporate most of the currently available spin-dependent analytical information. Improving on previous work, we confirm that certain m=oddm=\text{odd} modes, e.g. the (2,1)(2,1), and even the (3,1)(3,1), may develop a zero (or a minimum) in the amplitude for nearly equal-mass binaries and for several combinations of the individual spins. A remarkable EOB/NR agreement around such zero is found for these modes. The new waveform, and radiation reaction, prompts a new NR-calibration of the spinning sector of the model, done with only 3232 datasets.The maximum (2,2)(2,2) EOB/NR unfaithfulness Fˉ\bar{F} with Advanced LIGO noise against the SXS catalog (595\sim 595 datasets) is always below 0.5%0.5\% for binaries with total mass MM as 10MM200M10M_\odot\leq M \leq 200M_\odot, except for a single outlier with max(Fˉ)0.85%\max{(\bar{F})}\sim 0.85\%. When (2,1)(2,1), (3,3)(3,3) and (4,4)(4,4) modes are included, one finds an excellent EOB/NR agreement up to M120MM\sim 120M_\odot, above which the performance degrades slightly and moves above 3%3\%

Keywords

Cite

@article{arxiv.2001.09082,
  title  = {A multipolar effective one body waveform model for spin-aligned black hole binaries},
  author = {Alessandro Nagar and Gunnar Riemenschneider and Geraint Pratten and Piero Rettegno and Francesco Messina},
  journal= {arXiv preprint arXiv:2001.09082},
  year   = {2020}
}

Comments

45 pages, 21 figures, several changes with respect to the earlier version. Matches published version

R2 v1 2026-06-23T13:20:01.536Z