The cosmological constant problem and the effective potential of a gravity-coupled scalar
High Energy Physics - Theory
2024-09-25 v2
Abstract
We consider a quantum scalar field in a classical (Euclidean) De Sitter background, whose radius is fixed dynamically by Einstein's equations. In the case of a free scalar, it has been shown by Becker and Reuter that if one regulates the quantum effective action by putting a cutoff on the modes of the quantum field, the radius is driven dynamically to infinity when tends to infinity. We show that this result holds also in the case of a self-interacting scalar, both in the symmetric and broken-symmetry phase. Furthermore, when the gravitational background is put on shell, the quantum corrections to the mass and quartic self-coupling are found to be finite.
Keywords
Cite
@article{arxiv.2404.12357,
title = {The cosmological constant problem and the effective potential of a gravity-coupled scalar},
author = {Renata Ferrero and Roberto Percacci},
journal= {arXiv preprint arXiv:2404.12357},
year = {2024}
}
Comments
27 pages, 7 figures