Motion of Spinning Particles around Electrically Charged Black Hole in Eddington-inspired Born-Infeld Gravity
arXiv:2111.00864 · doi:10.1140/epjc/s10052-022-10229-9
Abstract
A test particle possessing spin angular momentum moves along a non-geodesic path due to an additional spin-curvature force. We study the spinning test particle moving in the vicinity of the electrically charged black hole formation in Eddington-inspired Born-Infeld (EiBI) gravity. Through the numerical analysis of its effective potential and orbits, it is found that the orbital eccentricity reduces as the deviation parameter increases. By comparing the orbits for the observed stars around Sagittarius A*, we conclude that the observed orbits with too large radii can not give a stringent constraint with acceptable magnitude. To dig out the potential observation effects of the relations between the orbits and parameter , we mainly focus on the orbits in the vicinity of black hole in this paper. The parameters of inner most stable circular orbit (ISCO) decrease monotonously with when the spin angular momentum is small, however they change non-monotonously with when the spin is large enough. Moreover, the spin dependences of ISCO parameters have similar behavior to that of Reissner-Nordström (RN) black hole. We analyze the causality of the circular orbits by using the superluminal constraint condition as well. As a result, two new parameter regions may emerge in case of large , where the particle has two stable circular orbits with one subluminal and the other superluminal.
14 pages, 29 figures
References in corpus (20)
- Concepts and status of Chinese space gravitational wave detection projects
- Surface singularities in Eddington-inspired Born-Infeld gravity
- Bouncing Eddington-inspired Born-Infeld cosmologies: an alternative to Inflation ?
- Lorentzian wormholes in Eddington-inspired Born-Infeld gravity
- Cosmology with Eddington-inspired Gravity
- A tensor instability in the Eddington inspired Born-Infeld Theory of Gravity
- Spinning test particles in the spacetime
- Recent progress on the description of relativistic spin: vector model of spinning particle and rotating body with gravimagnetic moment in General Relativity
- Spinning test-body orbiting around a Kerr black hole: circular dynamics and gravitational-wave fluxes
- Domain Wall Brane in Eddington Inspired Born-Infeld Gravity
- Properties of an electrically charged black hole in Eddington-inspired Born-Infeld gravity
- Charged spinning black holes as accelerators of spinning particles
- Spinning test particle motion around a traversable wormhole
- Bounds on spinning particles in their innermost stable circular orbits around rotating braneworld black hole
- Innermost stable circular orbits of charged spinning test particles
- Stability and (quasi-)localization of gravitational fluctuations in Eddington-Inspired Born-Infeld brane system
- Born-Infeld Gravity: Constraints from Light-by-Light Scattering and an Effective Field Theory Perspective
- Tensor-to-Scalar Ratio in Eddington-inspired Born-Infeld Inflation
- Spinning particle orbits around a black hole in an expanding background
- Eddington gravity with matter: An emergent perspective
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