English

Periapsis shift in spherically symmetric spacetimes and effect of electric interaction

General Relativity and Quantum Cosmology 2023-12-27 v1

Abstract

The periapsis shift of charged test particles in arbitrary static and spherically symmetric charged spacetimes are studied. Two perturbative methods, the near-circular approximation and post-Newtonian methods, are developed, and shown to be very accurate when the results are found to high orders. The former method is more precise when the eccentricity ee of the orbit is small while the latter works better when the orbit semilatus rectum pp is large. Results from these two methods are shown to agree with each other when both ee is small and pp is large. These results are then applied to the Reissner-Nordstr\"om spacetime, the Einstein-Maxwell-dilation gravity and a charged wormhole spacetime. The effects of various parameters on the periapsis shift, especially that of the electrostatic interaction, are carefully studied. The periapsis shift data of the solar-Mercury is then used to constrain the charges of the Sun and Mercury, and the data of the Sgr A^*-S2 periapsis shift is used to find, for the first time using this method, constraints about the charges of Sgr A^* and S2.

Keywords

Cite

@article{arxiv.2312.15452,
  title  = {Periapsis shift in spherically symmetric spacetimes and effect of electric interaction},
  author = {Qianchuan Wang and Junji Jia},
  journal= {arXiv preprint arXiv:2312.15452},
  year   = {2023}
}

Comments

17 pages, 9 figures