English

The renormalization group for non-renormalizable theories: Einstein gravity with a scalar field

General Relativity and Quantum Cosmology 2011-07-19 v2

Abstract

We develop a renormalization-group formalism for non-renormalizable theories and apply it to Einstein gravity theory coupled to a scalar field with the Lagrangian L=g[RU(ϕ)1/2G(ϕ)gμνμϕνϕV(ϕ)]L=\sqrt{g} [R U(\phi)-{1/2} G(\phi) g^{\mu\nu} \partial_{\mu}\phi \partial_{\nu}\phi- V(\phi)], where U(ϕ),G(ϕ)U(\phi), G(\phi) and V(ϕ)V(\phi) are arbitrary functions of the scalar field. We calculate the one-loop counterterms of this theory and obtain a system of renormalization-group equations in partial derivatives for the functions U,GU, G and VV playing the role of generalized charges which substitute for the usual charges in multicharge theories. In the limit of a large but slowly varying scalar field and small spacetime curvature this system gives the asymptotic behaviour of the generalized charges compatible with the conventional choice of these functions in quantum cosmological applications. It also demonstrates in the over-Planckian domain the existence of the Weyl-invariant phase of gravity theory asymptotically free in gravitational and cosmological constants.

Keywords

Cite

@article{arxiv.gr-qc/9302007,
  title  = {The renormalization group for non-renormalizable theories: Einstein gravity with a scalar field},
  author = {A. O. Barvinsky and A. Yu. Kamenshchik and I. P. Karmazin},
  journal= {arXiv preprint arXiv:gr-qc/9302007},
  year   = {2011}
}

Comments

54 pages, preprint Alberta Thy-6-93, latex