Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant

We study the effect of ultrahigh energy collisions of two particles with different energies near the horizon of a 2+1 dimensional BTZ black hole (BSW effect). We find that the particle with the critical angular momentum could exist inside the outer horizon of the BTZ black hole regardless of the par...

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Main Authors: Jie Yang, Yun-Liang Li, Yang Li, Shao-Wen Wei, Yu-Xiao Liu
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2014/204016
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author Jie Yang
Yun-Liang Li
Yang Li
Shao-Wen Wei
Yu-Xiao Liu
author_facet Jie Yang
Yun-Liang Li
Yang Li
Shao-Wen Wei
Yu-Xiao Liu
author_sort Jie Yang
collection DOAJ
description We study the effect of ultrahigh energy collisions of two particles with different energies near the horizon of a 2+1 dimensional BTZ black hole (BSW effect). We find that the particle with the critical angular momentum could exist inside the outer horizon of the BTZ black hole regardless of the particle energy. Therefore, for the nonextremal BTZ black hole, the BSW process is possible on the inner horizon with the fine tuning of parameters which are characterized by the motion of particle, while, for the extremal BTZ black hole, the particle with the critical angular momentum could only exist on the degenerated horizon, and the BSW process could also happen there.
format Article
id doaj-art-4056b3488ae8432db2c96a9adb81121a
institution Kabale University
issn 1687-7357
1687-7365
language English
publishDate 2014-01-01
publisher Wiley
record_format Article
series Advances in High Energy Physics
spelling doaj-art-4056b3488ae8432db2c96a9adb81121a2025-02-03T01:22:59ZengWileyAdvances in High Energy Physics1687-73571687-73652014-01-01201410.1155/2014/204016204016Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological ConstantJie Yang0Yun-Liang Li1Yang Li2Shao-Wen Wei3Yu-Xiao Liu4Institute of Theoretical Physics, Lanzhou University, Lanzhou 730000, ChinaInstitute of Theoretical Physics, Lanzhou University, Lanzhou 730000, ChinaDepartment of Physics, Beijing Normal University, Beijing 100875, ChinaInstitute of Theoretical Physics, Lanzhou University, Lanzhou 730000, ChinaInstitute of Theoretical Physics, Lanzhou University, Lanzhou 730000, ChinaWe study the effect of ultrahigh energy collisions of two particles with different energies near the horizon of a 2+1 dimensional BTZ black hole (BSW effect). We find that the particle with the critical angular momentum could exist inside the outer horizon of the BTZ black hole regardless of the particle energy. Therefore, for the nonextremal BTZ black hole, the BSW process is possible on the inner horizon with the fine tuning of parameters which are characterized by the motion of particle, while, for the extremal BTZ black hole, the particle with the critical angular momentum could only exist on the degenerated horizon, and the BSW process could also happen there.http://dx.doi.org/10.1155/2014/204016
spellingShingle Jie Yang
Yun-Liang Li
Yang Li
Shao-Wen Wei
Yu-Xiao Liu
Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant
Advances in High Energy Physics
title Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant
title_full Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant
title_fullStr Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant
title_full_unstemmed Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant
title_short Particle Collisions in the Lower Dimensional Rotating Black Hole Space-Time with the Cosmological Constant
title_sort particle collisions in the lower dimensional rotating black hole space time with the cosmological constant
url http://dx.doi.org/10.1155/2014/204016
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