Boson Cloud Atlas: Direct mass measurements of superradiance clouds near black holes

Fuente: arXiv
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Hauptverfasser: Khalaf, Majed, Kuflik, Eric, Lenoci, Alessandro, Stone, Nicholas Chamberlain
Format: Preprint
Veröffentlicht: 2024
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author Khalaf, Majed
Kuflik, Eric
Lenoci, Alessandro
Stone, Nicholas Chamberlain
author_facet Khalaf, Majed
Kuflik, Eric
Lenoci, Alessandro
Stone, Nicholas Chamberlain
contents Ultralight scalars emerge naturally in several motivated particle physics scenarios and are viable candidates for dark matter. While laboratory detection of such bosons is challenging, their existence in nature can be imprinted on measurable properties of astrophysical black holes (BHs). The phenomenon of superradiance can convert the BH spin kinetic energy into a bound cloud of scalars. In this letter, we propose a new technique for directly measuring the mass of a dark cloud around a spinning BH. We compare the measurement of the BH spin obtained with two independent electromagnetic techniques: continuum fitting and iron K$α$ spectroscopy. Since the former technique depends on a dynamical observation of the BH mass while the latter does not, a mismatch between the two measurements can be used to infer the presence of additional extended mass around the BH. We find that a precision of $\sim 1\%$ on the two spin measurements is required to exclude the null hypothesis of no dark mass around the BH at a 2$σ$ confidence level for dark masses about a few percent of the BH mass, as motivated in some superradiance scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2408_16051
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Boson Cloud Atlas: Direct mass measurements of superradiance clouds near black holes
Khalaf, Majed
Kuflik, Eric
Lenoci, Alessandro
Stone, Nicholas Chamberlain
High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
Ultralight scalars emerge naturally in several motivated particle physics scenarios and are viable candidates for dark matter. While laboratory detection of such bosons is challenging, their existence in nature can be imprinted on measurable properties of astrophysical black holes (BHs). The phenomenon of superradiance can convert the BH spin kinetic energy into a bound cloud of scalars. In this letter, we propose a new technique for directly measuring the mass of a dark cloud around a spinning BH. We compare the measurement of the BH spin obtained with two independent electromagnetic techniques: continuum fitting and iron K$α$ spectroscopy. Since the former technique depends on a dynamical observation of the BH mass while the latter does not, a mismatch between the two measurements can be used to infer the presence of additional extended mass around the BH. We find that a precision of $\sim 1\%$ on the two spin measurements is required to exclude the null hypothesis of no dark mass around the BH at a 2$σ$ confidence level for dark masses about a few percent of the BH mass, as motivated in some superradiance scenarios.
title Boson Cloud Atlas: Direct mass measurements of superradiance clouds near black holes
topic High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2408.16051