Emission of scalar particles from cylindrical black holes
arXiv:1109.5836 · doi:10.1007/s10509-012-1255-7
Abstract
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.
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- Hawking radiation of scalars from charged accelerating and rotating black holes with NUT parameter
- Hawking radiation of Dirac monopoles from the global monopole black hole with quantum gravity effects
- Quantum Tunneling of Spin-1 Particles from a 5D Einstein-Yang-Mills-Gauss-Bonnet Black Hole Beyond Semiclassical Approximation
- Accelerating black holes, spin-3/2 fields and C-metric
- Deformed Hamilton-Jacobi Method in Covariant Quantum Gravity Effective Models
- Hawking modes and the optimal disperser : Holographic lessons from the observer's causal-patch unitarity