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    Strong-gravity precession resonances for binary systems orbiting a Schwarzschild black hole

    Marta Cocco1,2,*, Gianluca Grignani1,†, Troels Harmark2,3,‡, Marta Orselli1,2,§, and Daniele Pica1,∥

    • *Contact author: marta.cocco@nbi.ku.dk
    • †Contact author: gianluca.grignani@unipg.it
    • ‡Contact author: harmark@nbi.ku.dk
    • §Contact author: marta.orselli@unipg.it
    • ∥Contact author: daniele.pica@nbi.ku.dk

    Phys. Rev. D 112, 044010 – Published 6 August, 2025

    DOI: https://doi.org/10.1103/l542-s32g

    Abstract

    Binary systems of compact objects in close orbit around a supermassive black hole (SMBH) may form in galactic nuclei, providing a unique environment to probe strong-gravity tidal effects on the binary’s dynamics. In this work, we investigate precession resonances arising between the periastron precession frequency of a binary system and its orbital frequencies around the SMBH. By modeling the SMBH as a Schwarzschild black hole, we find that relativistic effects in the tidal field give rise to a significantly richer resonance spectrum compared to the Newtonian case. This result is supported by both perturbative and numerical analyses of the quadrupolar tidal interaction in the strong-gravity regime. Our results reveal new signatures for strong-gravity effects in such triple systems, with potential implications for gravitational-wave astronomy.

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