We present an alternative formation scenario for the gravitational wave event GW190521, that can be explained as the merger of central black holes from two ultra-dwarf galaxies of stellar mass ∼105−106M⊙, which had themselves previously undergone a merger. The GW190521 components' masses of 85−14+21M⊙ and 66−18+17M⊙ challenge standard stellar evolution models, as they fall in the so-called mass gap. We demonstrate that the merger history of ultra-dwarf galaxies at high redshifts (1≲z≲2) matches well the LIGO/Virgo inferred merger rate for black holes within the mass range of the GW190521 components, resulting in a likely time delay of ≲4 Gyr considering the redshift of this event. We further demonstrate that the predicted time-scales are consistent with expectations for central black hole mergers, although with large uncertainties due to the lack of high-resolution simulations in low-mass dwarf galaxies. Our findings show that this black hole production and merging channel is viable and extremely interesting as a new way to explore galaxies' black hole seeds and galaxy formation. We recommend this scenario be investigated in detail with simulations and observations.
@article{arxiv.2009.10688,
title = {GW190521 from the Merger of Ultra-Dwarf Galaxies},
author = {Antonella Palmese and Christopher J. Conselice},
journal= {arXiv preprint arXiv:2009.10688},
year = {2021}
}