Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution
We estimate the parameters of the Hybrid Palatini gravity model with the Schwarzschild precession of S-stars, specifically of the S2, S38 and S55 stars. We also take into account the case of bulk mass distribution near the Galactic Center. We assume that the Schwarzschild orbital precession of menti...
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2022-01-01
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author | Duško Borka Vesna Borka Jovanović Violeta N. Nikolić Nenad Đ. Lazarov Predrag Jovanović |
author_facet | Duško Borka Vesna Borka Jovanović Violeta N. Nikolić Nenad Đ. Lazarov Predrag Jovanović |
author_sort | Duško Borka |
collection | DOAJ |
description | We estimate the parameters of the Hybrid Palatini gravity model with the Schwarzschild precession of S-stars, specifically of the S2, S38 and S55 stars. We also take into account the case of bulk mass distribution near the Galactic Center. We assume that the Schwarzschild orbital precession of mentioned S-stars is the same as 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, the orbital precession is close to the GR prediction. Based on this observational fact, we evaluated the 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 the Hybrid Palatini gravity model for which the orbital precession is as in GR for all three stars. We also evaluated the parameters of the Hybrid Palatini Gravity model in the 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. |
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language | English |
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spelling | doaj.art-d3d257ae4f2042e28afd8d06ad266a652023-11-23T22:22:51ZengMDPI AGUniverse2218-19972022-01-01827010.3390/universe8020070Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass DistributionDuško Borka0Vesna Borka Jovanović1Violeta N. Nikolić2Nenad Đ. Lazarov3Predrag Jovanović4Department of Theoretical Physics and Condensed Matter Physics (020), Vinča Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, P.O. Box 522, 11001 Belgrade, SerbiaDepartment of Theoretical Physics and Condensed Matter Physics (020), Vinča Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, P.O. Box 522, 11001 Belgrade, SerbiaDepartment of Theoretical Physics and Condensed Matter Physics (020), Vinča Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, P.O. Box 522, 11001 Belgrade, SerbiaDepartment of Theoretical Physics and Condensed Matter Physics (020), Vinča Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, P.O. Box 522, 11001 Belgrade, SerbiaAstronomical Observatory, Volgina 7, P.O. Box 74, 11060 Belgrade, SerbiaWe estimate the parameters of the Hybrid Palatini gravity model with the Schwarzschild precession of S-stars, specifically of the S2, S38 and S55 stars. We also take into account the case of bulk mass distribution near the Galactic Center. We assume that the Schwarzschild orbital precession of mentioned S-stars is the same as 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, the orbital precession is close to the GR prediction. Based on this observational fact, we evaluated the 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 the Hybrid Palatini gravity model for which the orbital precession is as in GR for all three stars. We also evaluated the parameters of the Hybrid Palatini Gravity model in the 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.https://www.mdpi.com/2218-1997/8/2/70alternative theories of gravitysupermassive black holestellar dynamics |
spellingShingle | Duško Borka Vesna Borka Jovanović Violeta N. Nikolić Nenad Đ. Lazarov Predrag Jovanović Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution Universe alternative theories of gravity supermassive black hole stellar dynamics |
title | Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution |
title_full | Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution |
title_fullStr | Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution |
title_full_unstemmed | Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution |
title_short | Estimating the Parameters of the Hybrid Palatini Gravity Model with the Schwarzschild Precession of S2, S38 and S55 Stars: Case of Bulk Mass Distribution |
title_sort | estimating the parameters of the hybrid palatini gravity model with the schwarzschild precession of s2 s38 and s55 stars case of bulk mass distribution |
topic | alternative theories of gravity supermassive black hole stellar dynamics |
url | https://www.mdpi.com/2218-1997/8/2/70 |
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