Estimating the parameters of Hybrid Palatini gravity model with the Schwarzschild precession of S2, S38 and S55 stars: case of bulk mass distribution
arXiv:2205.02608 · doi:10.3390/universe8020070
Abstract
We estimate the parameters of Hybrid Palatini gravity model with the Schwarzschild precession of S-stars, specifically of S2, S38 and S55 stars. We also take into account case of bulk mass distribution near Galactic Center. We assume that the Schwarzschild orbital precession of mentioned S-stars is the same like in General Relativity (GR) in all studied cases. In 2020 the GRAVITY Collaboration detected the orbital precession of the S2 star around the supermassive black hole (SMBH) at the Galactic Center and showed that it is close to the GR prediction. The astronomical data analysis of S38 and S55 orbits showed that also in these cases orbital precession is close to the GR prediction. Based on this observational fact, we evaluated parameters of the Hybrid Palatini Gravity model with the Schwarzschild precession of the S2, S38 and S55 stars and we estimated the range of parameters of Hybrid Palatini gravity model for which the orbital precession is like in GR for all tree stars. We also evaluated parameters of the Hybrid Palatini Gravity model in case of different values of bulk mass density distribution of extended matter. We believe that proposed method is a useful tool to evaluate parameters of the gravitational potential at the Galactic Center.
23 pages, 6 figures. Accepted for publication in Universe
References in corpus (28)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- Palatini Approach to Modified Gravity: f(R) Theories and Beyond
- 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
- Low surface brightness galaxies rotation curves in the low energy limit of gravity : no need for dark matter?
- Extended Gravity Cosmography
- Infrared-modified gravities and massive gravitons
- Testing General Relativity with stellar orbits around the supermassive black hole in our Galactic center
- Wormholes supported by hybrid metric-Palatini gravity
- Analysis of Rotation Curves in the framework of R^n gravity
- The recovery of General Relativity in massive gravity via the Vainshtein mechanism
- Cosmology of hybrid metric-Palatini f(X)-gravity
- Orbital precession due to central-force perturbations
- Solar system constraints on R gravity
- 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
- Constraints on gravity from precession of orbits of S2-like stars
- Apoastron Shift Constraints on Dark Matter Distribution at the Galactic Center
- Gravitational lensing in fourth order gravity
- Einstein, Planck and Vera Rubin: relevant encounters between the Cosmological and the Quantum Worlds
- On post-Newtonian orbits and the Galactic-center stars
- A general solution in the Newtonian limit of f(R)- gravity
- Search for a Variation of the Fine Structure around the Supermassive Black Hole in Our Galactic Center
- Constraints on gravity from precession of orbits of S2-like stars: a case of a bulk distribution of mass
- Constraints on the range lambda of Yukawa-like modifications to the Newtonian inverse-square law of gravitation from Solar System planetary motions
- Unveiling the nature of SgrA* with the geodesic motion of S-stars
- Estimating the Parameters of Extended Gravity Theories with the Schwarzschild Precession of S2 Star
- Testing the Galactic Centre potential with S-stars