Large logarithms from quantum gravitational corrections to a massless, minimally coupled scalar on de Sitter
Publication date
2022-03-14
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Abstract
We consider single graviton loop corrections to the effective field equation of a massless, minimally coupled scalar on de Sitter background in the simplest gauge. We find a large temporal logarithm in the approach to freeze-in at late times, but no correction to the feeze-in amplitude. We also find a large spatial logarithm (at large distances) in the scalar potential generated by a point source, which can be explained using the renormalization group with one of the higher derivative counterterms regarded as a curvature-dependent field strength renormalization. We discuss how these results set the stage for a project to purge gauge dependence by including quantum gravitational corrections to the source which disturbs the effective field and to the observer who measures it.
Keywords
Effective field theories, Models of Quantum Gravity, Cosmology of Theories beyond the SM, renormalization group, Physics and Astronomy (miscellaneous)
Citation
Glavan, D, Miao, S-P, Prokopec, T & Woodard, R P 2022, 'Large logarithms from quantum gravitational corrections to a massless, minimally coupled scalar on de Sitter', Journal of High Energy Physics, vol. 2022, no. 3, 88, pp. 1-23. https://doi.org/10.1007/JHEP03(2022)088