Quantum Dynamics of Supergravity on R^3 x S^1
Abstract
We study the quantum dynamics of N=1 supergravity in four dimensions with a compact spatial circle. Supersymmetry ensures that the perturbative contributions to the Casimir energy on the circle cancel. However, instanton contributions remain. These render supersymmetric compactification on a circle unstable and the background dynamically decompactifies back to four dimensions. The calculation provides a testing ground for some old ideas in Euclidean quantum gravity. In particular, we show that gravitational instantons are associated to a new, infra-red scale which is naturally exponentially suppressed relative to the Planck scale and arises from the logarithmic running of the Gauss-Bonnet term. There are also some interesting technical details, including the non-cancellation of bosonic and fermionic determinants around the background of a self-dual gravitational instanton, despite the existence of supersymmetry.
Keywords
Cite
@article{arxiv.1408.3418,
title = {Quantum Dynamics of Supergravity on R^3 x S^1},
author = {David Tong and Carl Turner},
journal= {arXiv preprint arXiv:1408.3418},
year = {2021}
}
Comments
48 pages. v2: Added small summary to section 4. v3: Typo corrected