One-loop Graviton Corrections to Conformal Scalars on a de Sitter Background
arXiv:2007.10395 · doi:10.1103/PhysRevD.103.105022
Abstract
We exploit a recent computation of one graviton loop corrections to the self-mass [1] to quantum-correct the field equation for a massless, conformally coupled scalar on a de Sitter background. With the obvious choice for the finite part of the counterterm, we find that neither plane wave mode functions nor the response to a point source acquires large infrared logarithms. However, we do find a decaying logarithmic correction to the mode function and a short distance logarithmic running of the potential in addition to the power-law effect inherited from flat space.
25 pages, 2 figures; published version