Kermions: quantization of fermions on Kerr space-time
arXiv:1207.7089 · doi:10.1103/PhysRevD.87.064027
Abstract
We study a quantum fermion field on a background non-extremal Kerr black hole. We discuss the definition of the standard black hole quantum states (Boulware, Unruh and Hartle-Hawking), focussing particularly on the differences between fermionic and bosonic quantum field theory. Since all fermion modes (both particle and anti-particle) have positive norm, there is much greater flexibility in how quantum states are defined compared with the bosonic case. In particular, we are able to define a candidate `Boulware'-like state, empty at both past and future null infinity; and a candidate `Hartle-Hawking'-like equilibrium state, representing a thermal bath of fermions surrounding the black hole. Neither of these states have analogues for bosons on a non-extremal Kerr black hole and both have physically attractive regularity properties. We also define a number of other quantum states, numerically compute differences in expectation values of the fermion current and stress-energy tensor between two states, and discuss their physical properties.
38 pages, 9 figures, explanations improved in Section III, matches published version
References in corpus (6)
- Cargese Lectures on the Kerr/CFT Correspondence
- Rotating Black Holes at Future Colliders. III. Determination of Black Hole Evolution
- The massive Dirac field on a rotating black hole spacetime: Angular solutions
- Angular profile of emission of non-zero spin fields from a higher-dimensional black hole
- What are extremal Kerr Killing vectors up to?
- Electromagnetic Quantum Field Theory on Kerr-Newman Black Holes
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