Devoured by a Hairy Gargantua: Probing Massive Scalar Charges with Non-minimal Curvature Coupling with Extreme-Mass-Ratio Inspirals
Leif Lui, Adrian Ka-Wai Chung, Alejandro Torres-Orjuela
Abstract
Ultralight scalar fields nonminimally coupled to curvature can endow rotating black holes with stationary hair and alter nearby orbits. Using recently constructed hairy black-hole spacetimes, we model the transition to plunge of an extreme-mass-ratio inspiral. For scalar masses μM=0.01 and 0.1 and dimensionless curvature coupling ζ=10-3,10-4, we find O(10) rad of gravitational-wave dephasing relative to general relativity over O(103) orbits. A multimode Fisher forecast at μM=0.2, where neighbouring hair solutions permit a numerical μ-derivative, suggests that ζ and μ could be measured to precisions of 0.2\% and 0.6--1.1\%, respectively, for a source with signal-to-noise ratio of about 80 in LISA.
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