English

Discovery of a star sensitive to the spin of Sgr A*

Astrophysics of Galaxies 2026-07-14 v1 General Relativity and Quantum Cosmology

Abstract

Residing in the center of the Milky Way, Sgr A* is the closest massive black hole (MBH). Its vicinity has allowed measuring individual stellar orbits around it. The stars act as test particles and probe the gravitational potential around the 4.3×106M4.3 \times 10^6 M_\odot MBH. These observations have determined the central mass to sub-percent precision, and the mildly relativistic motions of stars have given access to the dominant relativistic corrections, the gravitational redshift, the transverse Doppler effect, and the prograde precession imposed by the Schwarzschild metric nature of the potential. These effects are of order β2=(v/c)2\beta^2 = (v/c)^2 (for velocity vv and speed of light cc). The Kerr metric for a rotating black hole leads to corrections of order β3\beta^3. Here, we report the discovery of a faint main-sequence star (mK=19.3m_K = 19.3), S301, on a 8.7-year orbit and with small enough a pericenter distance, such that the star's peak velocity reaches 2500025000\,km/s. Within the measurement capabilities of current near-infrared interferometry and future spectroscopy on an extremely large telescope, S301's motion is directly sensitive to the spin of Sgr A*. The high eccentricity of S301 suggests that it is the captured component of a binary that was torn apart via the Hills mechanism.

Keywords

Cite

@article{arxiv.2607.12664,
  title  = {Discovery of a star sensitive to the spin of Sgr A*},
  author = {K. Abd El Dayem and R. Abuter and N. Aimar and P. Amaro-Seoane and A. Berdeu and J. -P. Berger and G. Bourdarot and W. Brandner and A. Burkert and D. Calderon and C. Correia and J. Cuadra and R. Davies and D. Defrere and L. Delit and A. Drescher and F. Eisenhauer and L. Esteras Otal and M. Fabricius and H. Feuchtgruber and N. M. Foerster Schreiber and A. Foschi and P. Garcia and R. Garcia Lopez and A. Generozov and R. Genzel and S. Gillessen and F. Gonte and X. Haubois and S. F. Hoenig and M. Houlle and S. Joharle and A. Kaufer and J. Kammerer and P. Kervella and J. Kolb and L. Kreidberg and L. Labadie and S. Lacour and O. Lai and R. Laugier and J. -B. Le Bouquin and J. Leftley and B. Lopez and D. Lutz and F. Mang and A. Merand and F. Millour and M. Montarges and N. Morujao and H. Nowacki and M. Nowak and S. Oberti and J. Osorno and T. Ott and T. Paumard and C. Paladini and H. B. Perets and K. Perraut and G. Perrin and R. Petrov and P. O. Petrucci and T. Piran and N. Pourre and S. Rabien and D. C. Ribeiro and S. Robbe-Dubois and M. Sadun Bordoni and J. Sanchez Bermudez and D. Santos and R. Sari and J. Sauter and S. Scheithauer and J. Scigliuto and J. Shangguan and T. T. Shimizu and F. Soulez and J. Stadler and C. Straubmeier and E. Sturm and M. Subroweit and C. Sykes and L. J. Tacconi and P. Thevenet and I. Urso and F. Vincent and J. Woillez and G. Zins},
  journal= {arXiv preprint arXiv:2607.12664},
  year   = {2026}
}

Comments

accepted for publication in Nature