Dynamical Triangulations for 2D Pure Gravity and Topological Recursion
arXiv:2509.18916 · doi:10.1007/JHEP05(2026)208
Abstract
We show that, in two-dimensional Euclidean quantum gravity without matter fields, the Schwinger-Dyson equations derived within the Hamiltonian framework of non-critical string field theory can be reformulated in terms of the Chekhov-Eynard-Orantin topological recursion, and we explicitly compute the associated low-order amplitudes. In particular, we establish this reformulation for two discrete models -- the basic type and the strip type -- as well as for the continuum limit of dynamical triangulations.
59 pages, 15 figures; v2: an updated version which was accepted to JHEP