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Stellar rotation of S301 as a macroscopic gyroscope to test general relativity

Astrophysics of Galaxies 2026-07-28 v1 General Relativity and Quantum Cosmology

Abstract

Stellar trajectories around the Galactic Center provide a testing environment for general relativity. The intrinsic rotation of these stars evolves under covariant transport in curved spacetime and classical Newtonian quadrupole torques. We analyze the recently observed S301 S-star to quantify the relativistic precession of its rotational axis. Its 8.7-year period and eccentricity of e=0.982e = 0.982 localize geodetic precession and Newtonian quadrupole torques to a step function at periapsis. We incorporate first-order post-Newtonian corrections into the orbital kinematics to calculate the spatial trajectory. Sampling an isotropic distribution of initial orientations and viewing geometries over a 40-year period across a grid of equatorial velocities and rotational ellipticities, we calculate the statistical likelihood of an absolute shift in the projected rotational line broadening, Δvsini|\Delta v \sin i|. The relativistic geodetic shift scales linearly with vrotv_{\rm rot} and the classical quadrupole shift is independent of rotation speed, scaling with qq. The absolute maximum velocity shift saturates at 46.1\kms46.1\,\kms for oblate stars. The absolute median shifts, driven by geodetic precession, range from 3\kms3\,\kms to 6.3\kms6.3\,\kms. We calculate the time-domain observable Δvsini|\Delta v \sin i| to provide a target for infrared spectrographs testing the Schwarzschild metric around Sgr~A^\ast. The spin of S301 acts as a flying gyroscope whose drift, if measured, can test Einstein's theory in a regime that has not previously been accessible.

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@article{arxiv.2607.26134,
  title  = {Stellar rotation of S301 as a macroscopic gyroscope to test general relativity},
  author = {Pau Amaro Seoane and Xian Chen and Alejandro Torres-Orjuela and Reinhard Genzel and Frank Eisenhauer and Thomas Ott and Stefan Gillessen and Guillaume Bourdarot and Diogo C. Ribeiro and Matteo Sadun Bordoni and Simran Joharle and Felix Mang and Andreas Burkert and Jorge Cuadra and Diego Calderón and Hagai B. Perets and Tsvi Piran and Thorsten Naab and Re'em Sari},
  journal= {arXiv preprint arXiv:2607.26134},
  year   = {2026}
}

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