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arXiv:2604.08053·v2·High Energy Physics — Phenomenology

Constraining Ultralight Scalar Dark Matter in the Galactic Center with the S2 Orbit

Jiang-Chuan Yu🇨🇳 · Yan Cao🇨🇳 · Lijing Shao🇨🇳

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Abstract

The dense environment of our Galactic Center (GC) offers a unique laboratory for probing ultralight dark matter (ULDM). We explore the prospect of detecting a scalar ULDM field through its effects on the orbital dynamics of S-stars around the supermassive black hole in the GC, Sgr A. We consider both linear and quadratic couplings between the real scalar field and Standard Model particles, and analyze two representative ULDM structures: the scalar gravitational atom and the spherical soliton. We first find that quadratic coupling induces a non-oscillatory perturbation, leading to a long-term secular orbital evolution. We use the observed periastron precession rate of S2 star to put stringent constraints on the total ULDM mass in the GC and the quadratic coupling constant. For the gravitational atom state, assuming an equatorial S2 orbit, we constrain the mass ratio of ULDM to Sgr A to at eV, and for the spherical soliton which extends to pc, the mass ratio is limited to at eV. Notably, over part of the mass range , the S2 constraints are stronger than the corresponding bounds from Cassini and MICROSCOPE.

Comments: 19 pages, 4 figures

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