The Need to Renormalize the Cosmological Constant
Abstract
We consider the massless, minimally coupled scalar on de Sitter background. Although the 1-loop divergences of the graviton 1PI 2-point function are canceled by the usual Weyl () and Eddington () counterterms, there is still a finite, nonzero contribution to the graviton 1-point function. Unless this is canceled by a finite renormalization of the cosmological constant, the 1PI 2-point function will not be conserved, nor will the parameter ``'' correspond to the actual Hubble constant. We argue that a similar finite renormalization of the cosmological constant is necessary in pure gravity, and that this must be done when solving the effective field equations for 1-loop corrections to the graviton wave function and to the force of gravity.
Cite
@article{arxiv.2312.15913,
title = {The Need to Renormalize the Cosmological Constant},
author = {N. C. Tsamis and R. P. Woodard and B. Yesilyurt},
journal= {arXiv preprint arXiv:2312.15913},
year = {2023}
}
Comments
11 pages, uses LaTeX2e