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arXiv:1612.00038·v3·High Energy Astrophysical Phenomena

Constraining Black Holes with Light Boson Hair and Boson Stars using Epicyclic Frequencies and QPOs

Nicola Franchini🇮🇹 · Paolo Pani🇮🇹 · Andrea Maselli🇩🇪 · Leonardo Gualtieri🇮🇹 · Carlos A R Herdeiro🇵🇹 · Eugen Radu🇵🇹 · Valeria Ferrari🇮🇹

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Abstract

Light bosonic fields are ubiquitous in extensions of the Standard Model. Even when minimally coupled to gravity, these fields might evade the assumptions of the black-hole no-hair theorems and give rise to spinning black holes which can be drastically different from the Kerr metric. Furthermore, they allow for self-gravitating compact solitons, known as (scalar or Proca) boson stars. The quasi-periodic oscillations (QPOs) observed in the X-ray flux emitted by accreting compact objects carry information about the strong-field region, thus providing a powerful tool to constrain deviations from Kerr's geometry and to search for exotic compact objects. By using the relativistic precession model as a proxy to interpret the QPOs in terms of geodesic frequencies, we investigate how the QPO frequencies could be used to test the no-hair theorem and the existence of light bosonic fields near accreting compact objects. We show that a detection of two QPO triplets with current sensitivity can already constrain these models, and that the future eXTP mission or a LOFT-like mission can set very stringent constraints on black holes with bosonic hair and on (scalar or Proca) boson stars. The peculiar geodesic structure of compact scalar/Proca boson stars implies that these objects can easily be ruled out as alternative models for X-ray source GRO J1655-40.

Comments: 16 pages, 10 figures; v2: revised version containing an improved discussion and one new plot; v3: minor changes to match published version

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