Black Hole Dynamics in Power-law based Metric Gravity
arXiv:2005.01364 · doi:10.1007/s10714-020-02727-6
Abstract
In this work, we use power-law cosmology to investigate the evolution of black holes within the context of metric gravity satisfying the conditions provided by Starobinsky model. In our study, it is observed that presently accelerated expansion of the universe can be suitably explained by this integrated model without the need for dark energy. We also found that mass of a black hole decreases by absorbing surroundings energy-matter due to modification of gravity and more the accretion rate more is mass loss. Particularly the black holes, whose formation masses are nearly gm and above, are evaporated at a particular time irrespective of their formation mass. Again our analysis reveals that the maximum mass of a black hole supported by metric gravity is , where represents the solar mass.
10 pages, 2 figures
References in corpus (17)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- f(R,T) gravity
- Dark torsion as the cosmic speed-up
- Modified teleparallel gravity: inflation without inflaton
- Low surface brightness galaxies rotation curves in the low energy limit of gravity : no need for dark matter?
- The Cosmology of f(R) Gravity in the Metric Variational Approach
- Dark energy and dust matter phases from an exact -cosmology model
- On the co-existence of matter dominated and accelerating solutions in f(G)-gravity
- Constraining f(R) gravity in solar system, cosmology and binary pulsar systems
- Stability of f(R) black holes
- Gravitational waves and lensing of the metric theory proposed by Sobouti
- Early formation of galaxies initiated by clusters of primordial black holes
- Effect of accretion on primordial black holes in Brans-Dicke theory
- Evolution of primordial black holes in Jordan-Brans-Dicke cosmology
- Note on nonstationarity and accretion of Primordial Black Holes in Brans-Dicke theory
- Characteristic Formulation for Metric Gravity
- Evolution of Primordial Black Hole Mass Spectrum in Brans-Dicke Theory