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    Massive particle motion around Horndeski black holes

    D. A. Carvajal1,2,*, P. A. González3,†, Marco Olivares3,‡, Eleftherios Papantonopoulos4,§, and Yerko Vásquez5,∥

    • *Contact author: diego.carvajala@usach.cl
    • †Contact author: pablo.gonzalez@udp.cl
    • ‡Contact author: marco.olivaresr@mail.udp.cl
    • §Contact author: lpapa@central.ntua.gr
    • ∥Contact author: yvasquez@userena.cl

    Phys. Rev. D 112, 104040 – Published 14 November, 2025

    DOI: https://doi.org/10.1103/b8cn-mdfv

    Abstract

    The timelike structure of the four-dimensional asymptotically flat Horndeski black holes is studied in detail. Focusing on the motion of massive neutral test particles, we construct the corresponding effective potential and classify the admissible types of orbits. The equations of motion are solved analytically, yielding trajectories expressed in terms of Weierstrass elliptic functions and elementary functions. As an application, we compute the perihelion precession as a classical test of gravity within the Solar System and use it to place observational constraints on the coupling parameter between the scalar field and gravity.

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