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    Greybody factors in scalar-tensor gravity and beyond

    Georgios Antoniou1,2,*, Thomas D. Pappas3,†, and Panagiota Kanti4,‡

    • *Contact author: georgios.antoniou@roma1.infn.it
    • †Contact author: thomas.pappas@physics.slu.cz
    • ‡Contact author: pkanti@uoi.gr

    Phys. Rev. D 112, 084013 – Published 6 October, 2025

    DOI: https://doi.org/10.1103/zwhl-sqqs

    Abstract

    In the framework of the beyond Horndeski action, we consider three subtheories that support scalarized black-hole solutions, and look for modified characteristics compared to GR. We first study the propagation of massless scalar and vector test fields in the fixed background of an analytical spherically symmetric black hole derived in the context of a parity-symmetric beyond Horndeski theory, and show that the profiles of the effective gravitational potentials, greybody factors, absorption cross sections, and quasinormal frequencies exhibit distinct modifications as we move away from the GR limit. We then turn our attention to the perturbations of the gravitational field itself and adopt a full-theory analysis that takes into account the backreaction of the scalar field on the metric. Employing as background solutions scalarized black holes arising in the shift-symmetric Horndeski theory and in the quadratic-quartic-scalar-Gauss-Bonnet theory, we compute the greybody factors and quasinormal modes of the axial sector. In both theories, in direct correspondence to the form of the gravitational potential, which features multiple extremal points, we find modified (suppressed or nonmonotonic) greybody curves and altered quasinormal frequencies (smaller oscillating frequencies and larger damping times), especially as the hair-sourcing parameter increases.

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