Collision of an object in the transition from adiabatic inspiral to plunge around a Kerr black hole
arXiv:1109.6722 · doi:10.1103/PhysRevD.84.124032
Abstract
An inspiralling object of mass around a Kerr black hole of mass experiences a continuous transition near the innermost stable circular orbit from adiabatic inspiral to plunge into the horizon as gravitational radiation extracts its energy and angular momentum. We investigate the collision of such an object with a generic counterpart around a Kerr black hole. We find that the angular momentum of the object is fine-tuned through gravitational radiation and that the high-velocity collision of the object with a generic counterpart naturally occurs around a nearly maximally rotating black hole. We also find that the centre-of-mass energy can be far beyond the Planck energy for dark matter particles colliding around a stellar mass black hole and as high as erg for stellar mass compact objects colliding around a supermassive black hole, where the present transition formalism is well justified. Therefore, rapidly rotating black holes can accelerate objects inspiralling around them to energy high enough to be of great physical interest.
18 pages, no figure, accepted for publication in Physical Review D, typos corrected
References in corpus (9)
- Test bodies and naked singularities: is the self-force the cosmic censor?
- Charged Spinning Black Holes as Particle Accelerators
- Emergent Flux from Particle Collisions Near a Kerr Black Hole
- 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
- Acceleration of particles and shells by Reissner-Nordström naked singularities
- Transition from adiabatic inspiral to plunge into a spinning black hole
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