Backbone three-point correlation function in the two-dimensional Potts model
arXiv:2511.10393 · doi:10.1103/hsph-48k8
Abstract
We study the three-point correlation function of the backbone in the two-dimensional -state Potts model using the Fortuin--Kasteleyn (FK) representation. The backbone is defined as the biconnected skeleton of an FK cluster after removing all dangling ends and bridges. To circumvent the severe critical slowing down in direct Potts simulations for large , we employ large-scale Monte Carlo simulations of the O loop model on the hexagonal lattice, which is regarded to correspond to the Potts model with . Using a highly efficient cluster algorithm, we compute the universal three-point amplitude ratios for the backbone () and FK clusters (). Our computed exhibits excellent agreement with exact conformal field theory predictions, validating the reliability of our numerical approach. In the critical regime, we find that is systematically larger than . Conversely, along the tricritical branch, and coincide within numerical accuracy, strongly suggesting that holds throughout this regime. This finding mirrors the known equality of the backbone and FK cluster fractal dimensions at tricriticality, jointly indicating that both structures share the same geometric universality.
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References in corpus (11)
- SLE for theoretical physicists
- A Guide to Stochastic Loewner Evolution and its Applications
- On three-point connectivity in two-dimensional percolation
- Three-point functions in c <= 1 Liouville theory and conformal loop ensembles
- Connectivities of Potts Fortuin-Kasteleyn clusters and time-like Liouville correlator
- Factorization of correlations in two-dimensional percolation on the plane and torus
- Factorization of percolation density correlation functions for clusters touching the sides of a rectangle
- Spin clusters and conformal field theory
- Backbone and shortest-path exponents of the two-dimensional -state Potts model
- Correction-to-scaling exponent for percolation and the Fortuin--Kasteleyn Potts model in two dimensions
- Finite-size corrections from the subleading magnetic scaling field for the Ising and Potts models in two dimensions