Renormalisation of Newton's constant
Abstract
The problem of obtaining a gauge independent beta function for Newton's constant is addressed. By a specific parameterisation of metric fluctuations a gauge independent functional integral is constructed for the semiclassical theory around an arbitrary Einstein space. The effective action then has the property that only physical polarisations of the graviton contribute, while all other modes cancel with the functional measure. We are then able to compute a gauge independent beta function for Newton's constant in -dimensions to one-loop order. No Landau pole is present provided , where is the number of polarisations of the graviton. While adding a large number of matter fields can change this picture, the absence of a pole persists for the particle content of the standard model in four spacetime dimensions.
Cite
@article{arxiv.1501.05331,
title = {Renormalisation of Newton's constant},
author = {Kevin Falls},
journal= {arXiv preprint arXiv:1501.05331},
year = {2016}
}
Comments
v3: Conforms to PRD version. New section on parameterisation independence of Newtonian potential added. Extended discussion of the beta function in 2 + epsilon dimensions