Making classical and quantum canonical general relativity computable through a power series expansion in the inverse cosmological constant

Phys Rev Lett. 2000 Dec 18;85(25):5272-5. doi: 10.1103/PhysRevLett.85.5272.

Abstract

We consider general relativity with a cosmological constant as a perturbative expansion around a completely solvable diffeomorphism invariant field theory. This theory is the lambda --> infinity limit of general relativity. This allows an explicit perturbative computational setup in which the quantum states of the theory and the classical observables can be explicitly computed. An unexpected relationship arises at a quantum level between the discrete spectrum of the volume operator and the allowed values of the cosmological constant.