The effect of the WGC condition on the maximal energy extracted from black holes
arXiv:2011.06119 · doi:10.1140/epjp/s13360-022-03368-1
Abstract
In this paper, we study the Penrose process and the maximum energy extracted from the collision of two particles near the Kerr-Newman black hole with WGC condition. We consider the collision process when two particles collide in the ergosphere region of a black hole, scattering two new particles; one of them falls into the black hole and the other escapes to infinity. Our calculations also show an increasing in the energy. We also checked how much energy could be received from a black hole for particles with different spins. Results of this paper will help us to identify and study the black holes of astrophysics and the particles with different spins. Also, it states how black holes work in WGC conditions.
18 pages, 33 figures
References in corpus (23)
- On the Geometry of the String Landscape and the Swampland
- The Weak Gravity Conjecture in three dimensions
- Charged Spinning Black Holes as Particle Accelerators
- Acceleration of particles by nonrotating charged black holes
- Infrared Consistency and the Weak Gravity Conjecture
- Nonperturbative black hole entropy and Kloosterman sums
- Emergent Flux from Particle Collisions Near a Kerr Black Hole
- The Weak Gravity Conjecture and Effective Field Theory
- Exponential corrections to black hole entropy
- Black holes as particle accelerators: a brief review
- Ultra-high-energy debris from the collisional Penrose process
- High energy collision of two particles in wormhole spacetimes
- Non-Pertubative Quantum Corrections to a Born-Infeld Black Hole and its Information Geometry
- Kerr-Sen Black Hole as Accelerator for Spinning Particles
- Rotating 4D Gauss-Bonnet black hole as particle accelerator
- Quantum Work and Information Geometry of a Quantum Myers-Perry Black Hole
- Quantum Corrections to the Thermodynamics of Black Branes
- Maximal efficiency of the collisional Penrose process with spinning particles in Kerr-Sen black hole
- Universality of BSW mechanism for spinning particles
- Exploring black holes as particle accelerators: hoop-radius, target particles and escaping conditions
- Consistent analytic approach to the efficiency of collisional Penrose process
- An Implication of "Gravity as the Weakest Force"
- Collisional Penrose process of BTZ black holes