What does lie at the Milky Way centre? Insights from the S2 star orbit precession
arXiv:2109.10729 · doi:10.1093/mnrasl/slab126
Abstract
It has been recently demonstrated that both, a classical Schwarzschild black hole (BH), and a dense concentration of self-gravitating fermionic dark matter (DM) placed at the Galaxy centre, can explain the precise astrometric data (positions and radial velocities) of the S-stars orbiting SgrA*. This result encompasses the 17 best resolved S-stars, and includes the test of general relativistic effects such as the gravitational redshift in the S2-star. In addition, the DM model features another remarkable result: the dense core of fermions is the central region of a continuous density distribution of DM whose diluted halo explains the Galactic rotation curve. In this Letter, we complement the above findings by analyzing in both models the relativistic periapsis precession of the S2-star orbit. While the Schwarzschild BH scenario predicts a unique prograde precession for S2, in the DM scenario it can be either retrograde or prograde, depending on the amount of DM mass enclosed within the S2 orbit, which in turn is a function of the DM fermion mass. We show that all the current and publicly available data of S2 can not discriminate between the two models, but upcoming S2 astrometry close to next apocentre passage could potentially establish if SgrA* is governed by a classical BH or by a quantum DM system.
5 pages, 3 figures. Submitted to MNRAS Letters
References in corpus (11)
- Detection of the Schwarzschild precession in the orbit of the star S2 near the Galactic centre massive black hole
- An Update on Monitoring Stellar Orbits in the Galactic Center
- An Improved Distance and Mass Estimate for Sgr A* from a Multistar Orbit Analysis
- Investigating the Relativistic Motion of the Stars Near the Supermassive Black Hole in the Galactic Center
- S62 and S4711: Indications of a population of faint fast moving stars inside the S2 orbit -- S4711 on a 7.6 year orbit around Sgr~A*
- An upper limit on the spin of SgrA based on stellar orbits in its vicinity
- Hinting a dark matter nature of Sgr A* via the S-stars
- The geodesic motion of S2 and G2 as a test of the fermionic dark matter nature of our galactic core
- Kinematic Structure of the Galactic Center S-cluster
- Dark-matter dynamical friction versus gravitational-wave emission in the evolution of compact-star binaries
- Strong lensing by fermionic dark matter in galaxies