Quantum amplitudes in black-hole evaporation: spins 1 and 2
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Publication:2493064
DOI10.1016/j.aop.2005.11.011zbMath1097.83018arXiv0708.2013OpenAlexW2005996864MaRDI QIDQ2493064
A. N. St. J. Farley, Peter D. D'Eath
Publication date: 9 June 2006
Published in: Annals of Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/0708.2013
Black holes (83C57) Methods of quantum field theory in general relativity and gravitational theory (83C47)
Related Items
RELIC RADIATION FROM AN EVAPORATING BLACK HOLE ⋮ Coherent and squeezed states in black-hole evaporation ⋮ QUANTUM AMPLITUDES IN BLACK-HOLE EVAPORATION: COMPLEX APPROACH AND SPIN-0 AMPLITUDE ⋮ Quantum amplitudes in black-hole evaporation: spins 1 and 2
Cites Work
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- Bogoliubov transformations for amplitudes in black-hole evaporation
- Scalar-field amplitudes in black-hole evaporation
- Two simple solutions to Einstein's field equations
- Stability in gauged extended supergravity
- Quantum field theory techniques in graphical enumeration
- A secret tunnel through the horizon
- The unpredictability of quantum gravity
- Vaidya space-time in black-hole evaporation
- Quantum amplitudes in black-hole evaporation: spins 1 and 2
- Gravitational Field of a Particle Falling in a Schwarzschild Geometry Analyzed in Tensor Harmonics
- Stability of a Schwarzschild Singularity
- Self-duality in four-dimensional Riemannian geometry
- A space-time calculus based on pairs of null directions
- Supersymmetric Quantum Cosmology
- Persistence amplitudes from numerical quantum gravity
- Spin-½ amplitudes in black-hole evaporation
- Hawking Radiation As Tunneling
- Wave function of the Universe
- Spin-s Spherical Harmonics and ð
- Type D Vacuum Metrics
- The Large Scale Structure of Space-Time
- Gravitational Multipole Radiation
- On the Analogy Between Classical and Quantum Mechanics
- Scattering from Black Holes