Quantum backreaction of massive fields and self-consistent semiclassical extreme black holes and acceleration horizons
arXiv:gr-qc/0102109 · doi:10.1103/PhysRevD.64.104018
Abstract
We consider the effect of backreaction of quantized massive fields on the metric of extreme black holes (EBH). We find the analytical approximate expression for the stress-energy tensor for a scalar (with an arbitrary coupling), spinor and vector fields near an event horizon. We show that, independent of a concrete type of EBH, the energy measured by a freely falling observer is finite on the horizon, so that quantum backreaction is consistent with the existence of EBH. For the Reissner-Nordstrom EBH with a total mass M_{tot} and charge Q we show that for all cases of physical interest M_{tot}< Q. We also discuss different types of quantum-corrected Bertotti-Robinson spacetimes, find for them exact self-consistent solutions and consider situations in which tiny quantum corrections lead to the qualitative change of the classical geometry and topology. In all cases one should start not from a classical background with further adding quantum corrections but from the quantum-corrected self-consistent geometries from the very beginning.
Minor corrections. To appear in Phys. Rev. D
Cited by in corpus (22)
- Extremal limit of the regular charged black holes in nonlinear electrodynamics
- Classical model of elementary particle with Bertotti-Robinson core and extremal black holes
- Regular black holes in an asymptotically de Sitter universe
- Inside the degenerate horizons of regular black holes
- Curvature tensors on distorted Killing horizons and their algebraic classification
- Black hole remnants may exist if Starobinsky inflation occurred
- Higher dimensional black holes with a generalized gravitational action
- Reissner-Nordström geometry counterpart in semiclassical gravity
- Some general properties of the renormalized stress-energy tensor for static quantum states on (n+1)-dimensional spherically symmetric black holes
- Truly naked spherically-symmetric and distorted black holes
- Charged black holes in quadratic gravity
- Entropy of quantum-corrected black holes
- Semiclassical zero temperature black holes in spherically reduced theories
- Vacuum polarization of the quantized massive scalar field in Reissner-Nordström spacetime
- Semiclassical ultraextremal horizons
- geometries and the extreme quantum-corrected black holes
- Fully Explorable Horned Particles Hiding Charge
- The renormalized stress-energy tensor for scalar fields in the Boulware state with applications to extremal black holes
- Regular self-consistent geometries with infinite quantum backreaction in 2D dilaton gravity and black hole thermodynamics: unfamiliar features of familiar models
- Exactly solvable models in 2D semiclassical dilaton gravity and extremal black holes
- Quantum-corrected ultraextremal horizons and validity of WKB in massless limit
- Near-extremal and extremal quantum-corrected two-dimensional charged black holes