Emission of scalar particles from cylindrical black holes
We study quantum tunneling of scalar particles from black strings. For this purpose we apply WKB approximation and Hamilton-Jacobi method to solve the Klein-Gordon equation for outgoing trajectories. We find the tunneling probability of outgoing charged and uncharged scalars from the event horizon o...
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Veröffentlicht in: | Astrophysics and space science 2013, Vol.343 (1), p.181-185 |
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description | We study quantum tunneling of scalar particles from black strings. For this purpose we apply WKB approximation and Hamilton-Jacobi method to solve the Klein-Gordon equation for outgoing trajectories. We find the tunneling probability of outgoing charged and uncharged scalars from the event horizon of black strings, and hence the Hawking temperature for these black configurations. |
doi_str_mv | 10.1007/s10509-012-1255-7 |
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subjects | Approximation Astrobiology Astronomy Astrophysics Astrophysics and Astroparticles Black holes Black holes (astronomy) Charging Cosmology Event horizon Gravity Klein-Gordon equation Mathematical analysis Observations and Techniques Original Article Physics Physics and Astronomy Quantum physics Scalars Space Exploration and Astronautics Space Sciences (including Extraterrestrial Physics Strings Tunneling |
title | Emission of scalar particles from cylindrical black holes |
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