Truncation of Einstein equations through Gravitational Foliation
arXiv:1910.13522
Abstract
In previous works, we suggested considering a (3+1)D quantum gravitational field as an evolution of a (2+1)D renormalized quantum gravitational field along the direction of the gravitational force. The starting point of the suggestion is a derivation of a unique hypersurface which looks effectively like (2+1)D from the point of view of Einstein equations in (3+1)D. In this paper, we derive such unique hypersurfaces for different kinds of stationary spherical metrics. We find that these hypersurfaces exist whenever all the components of the gravitational force field vanish on the hypersurface. We discuss the implication of this result and the necessary further work.
26 pages, no figures
References in corpus (8)
- 3+1 Formalism and Bases of Numerical Relativity
- A New Area Law in General Relativity
- D1-D5-P microstates at the cap
- Proof of a New Area Law in General Relativity
- Quantum Black Hole Wave Packet: Average Area Entropy and Temperature Dependent Width
- The two canonical conjugate pairs at the horizon of a D1D5 black hole
- Thermodynamical Interpretation of the Second Law for Cosmology
- Schwarzschild-de Sitter black hole in canonical quantization