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    Radial oscillations of neutron stars in Starobinsky gravity and its Gauss-Bonnet extension

    Ziyi Li1,2, Zhong-Xi Yu3, Zhe Luo1,2, Shoulong Li1,2,*, and Hongwei Yu1,2,†

    • 1Department of Physics, Key Laboratory of Low Dimensional Quantum Structures and Quantum Control of Ministry of Education, and Institute of Interdisciplinary Studies, Hunan Normal University, Changsha 410081, China
    • 2Hunan Research Center of the Basic Discipline for Quantum Effects and Quantum Technologies, Hunan Normal University, Changsha 410081, China
    • 3School of Electronic Engineering, Huainan Normal University, Huainan 232038, China

    • *Contact author: shoulongli@hunnu.edu.cn
    • †Contact author: hwyu@hunnu.edu.cn

    Phys. Rev. D 112, 044019 – Published 12 August, 2025

    DOI: https://doi.org/10.1103/1tz3-llql

    Abstract

    Starobinsky gravity, as one of the simplest and best-behaved higher-curvature gravity theories, has been extensively studied in the context of neutron stars over the past few decades. In this work, we investigate the adiabatic radial oscillation stability of neutron stars within the framework of Starobinsky gravity. We find that gravitational modifications can significantly impact stellar stability. Specifically, the higher-derivative nature of the theory causes the exterior spacetime to dynamically respond to fluid oscillations, in contrast to general relativity where Birkhoff’s theorem ensures a static exterior. For stellar models with low central densities, the fundamental frequency becomes nearly independent of the central density when the coupling constant is large. For stellar models with high central densities, the transition from stability to instability still approximately occurs near the maximum-mass configuration, similar to the case in general relativity. Our main analysis is conducted in the Jordan frame of the scalar-tensor gravity equivalent to Starobinsky gravity, and we explicitly verify consistency with results obtained in the Einstein frame. We further extend our study to a class of Gauss-Bonnet extensions of Starobinsky gravity.

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