Effects of acceleration on the collision of particles in the rotating black hole spacetime
arXiv:1105.6156 · doi:10.1140/epjc/s10052-012-1898-0
Abstract
We study the collision of two geodesic particles in the accelerating and rotating black hole spacetime and probe the effects of the acceleration of black hole on the center-of-mass energy of the colliding particles and on the high-velocity collision belts. We find that the dependence of the center-of-mass energy on the acceleration in the near event-horizon collision is different from that in the near acceleration-horizon case. Moreover, the presence of the acceleration changes the shape and position of the high-velocity collision belts. Our results show that the acceleration of black holes brings richer physics for the collision of particles.
7 pages, 2 figures, The corrected version accepted for publication in EPJC
References in corpus (16)
- Charged Spinning Black Holes as Particle Accelerators
- Acceleration of particles by nonrotating charged black holes
- Emergent Flux from Particle Collisions Near a Kerr Black Hole
- Particle Acceleration on the Background of the Kerr-Taub-NUT Spacetime
- Collision of two general geodesic particles around a Kerr black hole
- Acceleration of particles by black holes -- general explanation
- Acceleration of colliding shells around a black hole: Validity of the test particle approximation in the Banados-Silk-West process
- Particle Collisions on Stringy Black Hole Background
- Accelerating Kerr-Newman black holes in (anti-)de Sitter space-time
- Naked singularities as particle accelerators
- Naked Singularities as Particle Accelerators II
- Radiation generated by accelerating and rotating charged black holes in (anti-)de Sitter space
- Rotating Charged Cylindrical Black Holes as Particle Accelerators
- Hawking radiation of scalar particles from accelerating and rotating black holes
- Can the Reissner-Nordström black hole or Schwarzschild black hole be the stable Planck-scale particle accelerator?
- Collision of two general geodesic particles around a Kerr-Newman black hole
Cited by in corpus (16)
- Black holes as particle accelerators: a brief review
- Chaotic motion of particles in the accelerating and rotating black holes spacetime
- Upper limits of particle emission from high-energy collision and reaction near a maximally rotating Kerr black hole
- Acceleration of particles and shells by Reissner-Nordström naked singularities
- Characterizing repulsive gravity with curvature eigenvalues
- Acceleration of particles by Janis-Newman-Winicour singularities
- High energy collision of two particles in wormhole spacetimes
- Ultra-high energy particle collisions in a regular spacetime without blackholes or naked singularities
- Study of Center of Mass Energy by Particles Collision in Some Black Holes
- Ultra-high energy collision with neither black hole nor naked singularity
- Universality of BSW mechanism for spinning particles
- New Electrically Charged Black Hole in Higher Derivative Gravity
- Schwarzschild black hole surrounded by quintessential matter field as an accelerator for spinning particles
- Stable circular orbits of spinning test particles around accelerating Kerr black hole
- Several solutions of the Klein-Gordon equation in Kerr-Newman spacetime and the BSW effect
- BSW process of the slowly evaporating charged black hole