A new asymptotical flat and spherically symmetric solution in the generalized Einstein–Cartan–Kibble–Sciama gravity and gravitational lensing

Type: Article

Publication Date: 2018-11-01

Citations: 10

DOI: https://doi.org/10.1140/epjc/s10052-018-6466-9

Abstract

We firstly present a new asymptotical flat and spherically symmetric solution in the generalized Einstein–Cartan–Kibble–Sciama theory of gravity and then investigate the propagation of photon in this background. This solution possesses three independent parameters which affect sharply photon sphere, deflection angle of light ray and gravitational lensing. Since the condition of existence of horizons is not inconsistent with that of photon sphere, there exists a special case where there is horizon but no photon sphere in this spacetime. Especially, we find that in this special case, the deflection angle of a light ray near the event horizon tends to a finite value rather than diverges, which is not explored in other spacetimes. We also study the strong gravitational lensing in this spacetime with the photon sphere and then probe how the spacetime parameters affect the coefficients in the strong field limit.

Locations

  • arXiv (Cornell University) - View - PDF
  • DOAJ (DOAJ: Directory of Open Access Journals) - View
  • DataCite API - View
  • The European Physical Journal C - View - PDF

Similar Works

Action Title Year Authors
+ PDF Chat Gravitational lensing by a black hole with torsion 2018 Lu Zhang
Songbai Chen
Jiliang Jing
+ PDF Chat Testing generalized Einstein–Cartan–Kibble–Sciama gravity using weak deflection angle and shadow cast 2020 Ali Övgün
İzzet Sakallı
+ Testing Generalized Einstein-Cartan-Kibble-Sciama Gravity Using Weak Deflection Angle and Shadow Cast 2020 Ali Övgün
İzzet Sakallı
+ Strong Gravitational Lensing for Photon Coupled to Weyl Tensor in Kiselev Black Hole 2019 G. Abbas
Asif Mahmood
M. Zubair
+ PDF Chat Strong gravitational lensing for photon coupled to Weyl tensor in Kiselev black hole 2020 G. Abbas
Asif Mahmood
M. Zubair
+ PDF Chat The Existence and Distribution of Photon Spheres Near Spherically Symmetric Black Holes -- A Geometric Analysis 2024 Chen-Kai Qiao
+ PDF Chat Strong gravitational lensing of a 4-dimensional Einstein–Gauss–Bonnet black hole in homogeneous plasma 2020 Xing-Hua Jin
Yuan-Xing Gao
Dao-Jun Liu
+ PDF Chat Asymptotically locally flat and AdS higher-dimensional black holes of Einstein–Horndeski–Maxwell gravity in the light of EHT observations: shadow behavior and deflection angle 2023 Kourosh Nozari
Sara Saghafi
+ New geometric and field theoretic aspects of a radiation dominated universe II. Fundamental Cosmological Observers (FCOs) 2018 Sujoy K. Modak
+ Strong gravitational lensing of a 4D Einstein-Gauss-Bonnet black hole in homogeneous plasma 2020 Xing-hua Jin
Yuan-Xing Gao
Dao-Jun Liu
+ Testing new massive conformal gravity with the light deflection by black hole 2023 Yasir Muhammad
Tiecheng Xia
Farzan Mushtaq
Kazuharu Bamba
+ PDF Chat Lorentz Symmetry Violation of Cosmic Photons 2022 Ping He
Bo-Qiang Ma
+ PDF Chat Spherical gravitational waves and quasi-spherical waves scattered from black string in massive gravity 2021 Hongsheng Zhang
Yang Huang
+ PDF Chat Geodesic Motion of Test Particles around the Scalar Hairy Black Holes with Asymmetric Vacua 2024 Hongyu Chen
Xiao Yan Chew
Wei Fan
+ Weak Deflection Angle and Shadow by Tidal Charged Black Hole 2020 Wajiha Javed
Ali Hamza
Ali Övgün
+ Strong gravitational lensing as the photons couple to Weyl tensor in a Schwarzschild black hole spacetime 2015 Songbai Chen
Jiliang Jing
+ Weak Deflection Angle and Shadow by Tidal Charged Black Hole 2021 Wajiha Javed
Ali Hamza
Ali Övgün
+ Weak gravitational lensing and shadow cast by rotating black holes in axionic Chern-Simons theory 2023 Nashiba Parbin
Dhruba Jyoti Gogoi
Umananda Dev Goswami
+ PDF Chat Gravitational lensing in the Simpson-Visser black-bounce spacetime in a strong deflection limit 2021 Naoki Tsukamoto
+ Trajectories of photons around a rotating black hole with unusual asymptotics 2024 Yong-Zhuang Li
Xiao-Mei Kuang