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Ultralight Bosons Explain the Mass-Spin Correlations in the Merging Binary Black Hole Population

Published 2 Sep 2026 in gr-qc, astro-ph.CO, and hep-ph | (2609.02678v1)

Abstract: Ultralight bosons could trigger superradiant instabilities in rapidly spinning black holes, forming oscillating clouds while extracting rotational energy. We consider an extended, superradiance-informed spin distribution model that characterizes possible environment-induced spin variations and compare its predictions with the observed population of merging black hole binaries in the Gravitational-Wave Transient Catalogs (GWTCs). We find that the mass-spin relation predicted by a scalar boson with mass mb10<sup>12</sup>eVm_b\sim 10<sup>{-12}</sup> \,\rm eV is consistent with the GWTCs, with increasing significance from GWTC-3.0 to 5.0. The Bayes factor reaches lnB7.8\ln B \approx 7.8 for GWTC-5.0. Intriguingly, this mass range largely coincides with a previous study based on a waveform analysis of the GW190728 gravitational wave event. Our findings provide compelling evidence that a superradiance-informed spin distribution model is highly compatible with the expanding binary black hole population dataset.

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