English

Classical and quantum nonlocal gravity

High Energy Physics - Theory 2022-11-11 v1 General Relativity and Quantum Cosmology

Abstract

This chapter of the Handbook of Quantum Gravity aims to illustrate how nonlocality can be implemented in field theories, as well as the manner it solves fundamental difficulties of gravitational theories. We review Stelle's quadratic gravity, which achieves multiplicative renormalizability successfully to remove quantum divergences by modifying the Einstein's action but at the price of breaking the unitarity of the theory and introducing Ostrogradski's ghosts. Utilizing nonlocal operators, one is able not only to make the theory renormalizable, but also to get rid of these ghost modes that arise from higher derivatives. We start this analysis by reviewing the classical scalar field theory and highlighting how to deal with this new kind of nonlocal operators. Subsequently, we generalize these results to classical nonlocal gravity and, via the equations of motion, we derive significant results about the stable vacuum solutions of the theory. Furthermore, we discuss the way nonlocality could potentially solve the singularity problem of Einstein's gravity. In the final part, we examine how nonlocality induced by exponential and asymptotically polynomial form factors preserves unitarity and improves the renormalizability of the theory.

Keywords

Cite

@article{arxiv.2211.05606,
  title  = {Classical and quantum nonlocal gravity},
  author = {Arnau Bas i Beneito and Gianluca Calcagni and Lesław Rachwał},
  journal= {arXiv preprint arXiv:2211.05606},
  year   = {2022}
}

Comments

50 pages, 6 figures. Invited chapter of the Handbook of Quantum Gravity, C. Bambi, L. Modesto and I.L. Shapiro (Eds.), Springer, expected in 2023

R2 v1 2026-06-28T05:36:13.567Z