Applications of the Schwarzschild–Finsler–Randers model
Abstract In this article, we study further applications of the Schwarzschild–Finsler–Randers (SFR) model which was introduced in a previous work Triantafyllopoulos et al. (Eur Phys J C 80(12):1200, 2020). In this model, we investigate curvatures and the generalized Kretschmann invariant which plays...
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2021
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oai:doaj.org-article:7588d3646f144295a1bd1e766f6180f62021-11-14T12:13:47ZApplications of the Schwarzschild–Finsler–Randers model10.1140/epjc/s10052-021-09790-61434-60441434-6052https://doaj.org/article/7588d3646f144295a1bd1e766f6180f62021-11-01T00:00:00Zhttps://doi.org/10.1140/epjc/s10052-021-09790-6https://doaj.org/toc/1434-6044https://doaj.org/toc/1434-6052Abstract In this article, we study further applications of the Schwarzschild–Finsler–Randers (SFR) model which was introduced in a previous work Triantafyllopoulos et al. (Eur Phys J C 80(12):1200, 2020). In this model, we investigate curvatures and the generalized Kretschmann invariant which plays a crucial role for singularities. In addition, the derived path equations are used for the gravitational redshift of the SFR-model and these are compared with the GR model. Finally, we get some results for different values of parameters of the generalized photonsphere of the SFR-model and we find small deviations from the classical results of general relativity (GR) which may be ought to the possible Lorentz violation effects.E. KapsabelisA. TriantafyllopoulosS. BasilakosP. C. StavrinosSpringerOpenarticleAstrophysicsQB460-466Nuclear and particle physics. Atomic energy. RadioactivityQC770-798ENEuropean Physical Journal C: Particles and Fields, Vol 81, Iss 11, Pp 1-11 (2021) |
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Astrophysics QB460-466 Nuclear and particle physics. Atomic energy. Radioactivity QC770-798 |
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Astrophysics QB460-466 Nuclear and particle physics. Atomic energy. Radioactivity QC770-798 E. Kapsabelis A. Triantafyllopoulos S. Basilakos P. C. Stavrinos Applications of the Schwarzschild–Finsler–Randers model |
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Abstract In this article, we study further applications of the Schwarzschild–Finsler–Randers (SFR) model which was introduced in a previous work Triantafyllopoulos et al. (Eur Phys J C 80(12):1200, 2020). In this model, we investigate curvatures and the generalized Kretschmann invariant which plays a crucial role for singularities. In addition, the derived path equations are used for the gravitational redshift of the SFR-model and these are compared with the GR model. Finally, we get some results for different values of parameters of the generalized photonsphere of the SFR-model and we find small deviations from the classical results of general relativity (GR) which may be ought to the possible Lorentz violation effects. |
format |
article |
author |
E. Kapsabelis A. Triantafyllopoulos S. Basilakos P. C. Stavrinos |
author_facet |
E. Kapsabelis A. Triantafyllopoulos S. Basilakos P. C. Stavrinos |
author_sort |
E. Kapsabelis |
title |
Applications of the Schwarzschild–Finsler–Randers model |
title_short |
Applications of the Schwarzschild–Finsler–Randers model |
title_full |
Applications of the Schwarzschild–Finsler–Randers model |
title_fullStr |
Applications of the Schwarzschild–Finsler–Randers model |
title_full_unstemmed |
Applications of the Schwarzschild–Finsler–Randers model |
title_sort |
applications of the schwarzschild–finsler–randers model |
publisher |
SpringerOpen |
publishDate |
2021 |
url |
https://doaj.org/article/7588d3646f144295a1bd1e766f6180f6 |
work_keys_str_mv |
AT ekapsabelis applicationsoftheschwarzschildfinslerrandersmodel AT atriantafyllopoulos applicationsoftheschwarzschildfinslerrandersmodel AT sbasilakos applicationsoftheschwarzschildfinslerrandersmodel AT pcstavrinos applicationsoftheschwarzschildfinslerrandersmodel |
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1718429353823436800 |