arXiv · 2504.02348
Rigorous results for timelike Liouville field theory
Abstract
Liouville field theory has long been a cornerstone of two-dimensional quantum field theory and quantum gravity, which has attracted much recent attention in the mathematics literature. Timelike Liouville field theory is a version of Liouville field theory where the kinetic term in the action appears with a negative sign, which makes it closer to a theory of quantum gravity than ordinary (spacelike) Liouville field theory. Making sense of this `wrong sign' requires a theory of Gaussian random variables with negative variance. Such a theory is developed in this paper, and is used to prove the timelike DOZZ formula for the $3$-point correlation function when the parameters satisfy the so-called `charge neutrality condition'. Expressions are derived also for the $k$-point correlation functions for all $k\ge 3$, and it is shown that these functions approach the correct semiclassical limits as the coupling constant is sent to zero
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Sourav Chatterjee. 2025-04-03. Rigorous results for timelike Liouville field theory. https://doi.org/10.1017/fms.2026.10223
Cite the original work for its findings. Save a collection to share your selection of sources.