English

On the renormalization group flow of f(R)-gravity

High Energy Physics - Theory 2008-11-26 v2

Abstract

We use the functional renormalization group equation for quantum gravity to construct a non-perturbative flow equation for modified gravity theories of the form S=ddxgf(R)S = \int d^dx \sqrt{g} f(R). Based on this equation we show that certain gravitational interactions monomials can be consistently decoupled from the renormalization group (RG) flow and reproduce recent results on the asymptotic safety conjecture. The non-perturbative RG flow of non-local extensions of the Einstein-Hilbert truncation including ddxgln(R)\int d^dx \sqrt{g} \ln(R) and ddxgRn\int d^dx \sqrt{g} R^{-n} interactions is investigated in detail. The inclusion of such interactions resolves the infrared singularities plaguing the RG trajectories with positive cosmological constant in previous truncations. In particular, in some RnR^{-n}-truncations all physical trajectories emanate from a Non-Gaussian (UV) fixed point and are well-defined on all RG scales. The RG flow of the ln(R)\ln(R)-truncation contains an infrared attractor which drives a positive cosmological constant to zero dynamically.

Keywords

Cite

@article{arxiv.0712.0445,
  title  = {On the renormalization group flow of f(R)-gravity},
  author = {Pedro F. Machado and Frank Saueressig},
  journal= {arXiv preprint arXiv:0712.0445},
  year   = {2008}
}

Comments

55 pages, 7 figures, typos corrected, references added, version to appear in Phys. Rev. D

R2 v1 2026-06-21T09:50:07.987Z