Accretion onto a static spherically symmetric regular MOG dark compact object
arXiv:2305.17186 · doi:10.1140/epjc/s10052-023-11620-w
Abstract
In astrophysics, the process of a massive body acquiring matter is referred to as accretion. The extraction of gravitational energy occurs as a result of the infall. Since it converts gravitational energy into radiation, accretion onto dark compact objects, e.g. black holes, neutron stars, and white dwarfs is an extremely significant process in the astrophysical context. Accretion process is a fruitful way to explore the features of modified gravity (MOG) theories by testing the behavior of their solutions associated with dark compact objects. In this paper, we study the motion of electrically neutral and charged particles moving in around a regular spherically symmetric MOG dark compact object to explore their related innermost stable circular orbit (ISCO) and energy flux. Then, we turn to investigate the accretion of perfect fluid onto the regular spherically symmetric MOG dark compact object. We obtain analytical expressions for four-velocity and proper energy density of the accreting fluid. We see that the MOG parameter increases the ISCO radius of either electrically neutral or charged test particles while it decreases the corresponding energy flux. Moreover, the energy density and the radial component of the four-velocity of the infalling fluid decrease by increasing the MOG parameter near the central source.
20 pages, 9 figures. Accepted for publication in Eur. Phys. J. C
References in corpus (14)
- Black Holes in Modified Gravity (MOG)
- Incidences between points and lines on a two-dimensional variety
- Modified Gravity Black Holes and their Observable Shadows
- The Bullet Cluster 1E0657-558 evidence shows Modified Gravity in the absence of Dark Matter
- Charged Black Holes in Phantom Cosmology
- Rotational Velocity Curves in the Milky Way as a Test of Modified Gravity
- Dynamics of Particles Around a Schwarzschild-like Black Hole in the Presence of Quintessence and Magnetic Field
- Galaxy cluster mass profiles
- Rotation and Mass in the Milky Way and Spiral Galaxies
- Ultra-hard fluid and scalar field in the Kerr-Newman metric
- Accretion onto a black hole in a string cloud background
- Phantom Accretion by Five Dimensional Charged Black Hole
- Quantum Corrections to the Accretion onto a Schwarzschild Black Hole in the Background of Quintessence
- MOG cosmology without dark matter and the cosmological constant