Spinning dilaton black hole in 2+1 dimensions as a particle accelerator
arXiv:1703.00373 · doi:10.1142/S0217732317500742
Abstract
In this paper we have studied particle collision around a spinning dilaton black hole in 2 +1 dimensions. This black hole is a solution to the low energy string theory in 2+1 dimensions. Time-like geodesics are presented in detail and the center of mass energy of two particles collision at the horizon of a spinning black hole is considered. We noticed that there is a possibility of the two masses to create infinite center of mass energy.
13 pages, 4 figures, accepted to be published in Modern Physics Letters A
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- Motion and collision of particles in rotating linear dilaton black hole
- Schwarzschild black hole surrounded by quintessential matter field as an accelerator for spinning particles
- Particle collisions near a three-dimensional warped AdS black hole
- Effect of the self-gravity of shells on a high energy collision in a rotating Bañados-Teitelboim-Zanelli spacetime
- Collision of particles near a three-dimensional rotating Hořava AdS black hole
- Charged dilaton black hole in 2+1 dimensions as a particle accelerator
- Motion and collision of particles near DST Black holes
- Collision of particles near charged MSW black hole in 2 + 1 dimensions