Binary Black Hole Spins: Model Selection with GWTC-3

Author:

Périgois Carole12ORCID,Mapelli Michela123ORCID,Santoliquido Filippo124ORCID,Bouffanais Yann12ORCID,Rufolo Roberta1

Affiliation:

1. Physics and Astronomy Department Galileo Galilei, University of Padova, Vicolo dell’Osservatorio 3, 35122 Padua, Italy

2. INFN—Padova, Via Marzolo 8, 35131 Padua, Italy

3. Institut für Theoretische Astrophysik, Zentrüm für Astronomie, Albert-Ueberle-Strasse 2, 69120 Heidelberg, Germany

4. Gran Sasso Science Institute (GSSI), 67100 L’Aquila, Italy

Abstract

The origin of the spins of stellar-mass black holes is still controversial, and angular momentum transport inside massive stars is one of the main sources of uncertainty. Here, we apply hierarchical Bayesian inference to derive constraints on spin models from the 59 most confident binary black hole merger events in the third gravitational-wave transient catalogue (GWTC-3). We consider up to five parameters: chirp mass, mass ratio, redshift, effective spin, and precessing spin. For the model selection, we use a set of binary population synthesis simulations spanning drastically different assumptions for black hole spins and natal kicks. In particular, our spin models range from the maximal to minimal efficiency of angular momentum transport in stars. We find that if we include the precessing spin parameter into our analysis, models predicting only vanishingly small spins are in tension with GWTC-3 data. On the other hand, models in which most spins are vanishingly small but that also include a subpopulation of tidally spun-up black holes are a good match to the data. Our results show that the precessing spin parameter has a crucial impact on model selection.

Funder

European Research Council

Publisher

MDPI AG

Subject

General Physics and Astronomy

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