Unified approach to study quantum properties of primordial black holes, wormholes and of quantum cosmology
arXiv:gr-qc/9907008 · doi:10.1142/S0217732399001401
Abstract
We review the anomaly induced effective action for dilaton coupled spinors and scalars in large N and s-wave approximation. It may be applied to study the following fundamental problems: construction of quantum corrected black holes (BHs), inducing of primordial wormholes in the early Universe (this effect is confirmed) and the solution of initial singularity problem. The recently discovered anti-evaporation of multiple horizon BHs is discussed. The existance of such primordial BHs may be interpreted as SUSY manifestation. Quantum corrections to BHs thermodynamics maybe also discussed within such scheme.
LaTeX file and two eps files, to appear in MPLA, Brief Reviews
References in corpus (4)
- (Anti-)Evaporation of Schwarzschild-de Sitter Black Holes
- Trace Anomaly of Dilaton Coupled Scalars in Two Dimensions
- Induced wormholes due to quantum effects of spherically reduced matter in large N approximation
- Trace Anomaly and Non-Local Effective Action for 2D Conformally Invariant Scalar Interacting with Dilaton
Cited by in corpus (11)
- Primordial Black Holes
- Gravitational Lensing by Rotating Wormholes
- Black hole solutions in F(R) gravity with conformal anomaly
- Fundamental Particle Structure in the Cosmological Dark Matter
- Light deflection by charged wormholes in Einstein-Maxwell-dilaton theory
- Conical Morris-Thorne Wormholes with a Global Monopole Charge
- Islands in Non-Minimal Dilaton Gravity: Exploring Effective Theories for Black Hole Evaporation
- Can Holographic dark energy increase the mass of the wormhole?
- Unveiling horizons in quantum critical collapse
- The Fate of Nucleated Black Holes in de Sitter Quantum Gravity
- Trace anomaly contributions to semi-classical wormhole geometries