arXiv · 2205.13558
Configuration space for quantum gravity in a locally regularized path integral
Abstract
We discuss some aspects of the metric configuration space in quantum gravity in the background field formalism. We give a necessary and sufficient condition for the parameterization of Euclidean metric fluctuations such that i) the signature of the metric is preserved in all configurations that enter the gravitational path integral, and ii) the parameterization provides a bijective map between full Euclidean metrics and metric fluctuations about a fixed background. For the case of foliatable manifolds, we show how to parameterize fluctuations in order to preserve foliatability of all configurations. Moreover, we show explicitly that preserving the signature on the configuration space for the Lorentzian quantum gravitational path integral is most conveniently achieved by inequality constraints. We discuss the implementation of these inequality constraints in a non-perturbative renormalization group setup.
Explore related subjects
Keep this discovery
Benjamin Knorr, Alessia Platania, Marc Schiffer. 2022-05-26. Configuration space for quantum gravity in a locally regularized path integral. https://doi.org/10.1103/physrevd.106.126002
Cite the original work for its findings. Save a collection to share your selection of sources.