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Dynamics of Lattice Triangulations on Thin Rectangles

Published 22 May 2015 in math.PR, cs.DM, and math.CO | (1505.06161v1)

Abstract: We consider random lattice triangulations of $n\times k$ rectangular regions with weight $\lambda{|\sigma|}$ where $\lambda>0$ is a parameter and $|\sigma|$ denotes the total edge length of the triangulation. When $\lambda\in(0,1)$ and $k$ is fixed, we prove a tight upper bound of order $n2$ for the mixing time of the edge-flip Glauber dynamics. Combined with the previously known lower bound of order $\exp(\Omega(n2))$ for $\lambda>1$ [3], this establishes the existence of a dynamical phase transition for thin rectangles with critical point at $\lambda=1$.

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