By probing the population of binary black hole (BBH) mergers detected by LIGO-Virgo, we can infer properties about the underlying black hole formation channels. A mechanism known as pair-instability (PI) supernova is expected to prevent the formation of black holes from stellar collapse with mass greater than ∼40−65M⊙ and less than ∼120M⊙. Any BBH merger detected by LIGO-Virgo with a component black hole in this gap, known as the PI mass gap, likely originated from an alternative formation channel. Here, we firmly establish GW190521 as an outlier to the stellar-mass BBH population if the PI mass gap begins at or below 65M⊙. In addition, for a PI lower boundary of 40−50M⊙, we find it unlikely that the remaining distribution of detected BBH events, excluding GW190521, is consistent with the stellar-mass population.
@article{arxiv.2106.00605,
title = {Detection of LIGO-Virgo binary black holes in the pair-instability mass gap},
author = {Brendan O'Brien and Marek Szczepanczyk and V. Gayathri and Imre Bartos and Gabriele Vedovato and Giovanni Prodi and Guenakh Mitselmakher and Sergey Klimenko},
journal= {arXiv preprint arXiv:2106.00605},
year = {2021}
}