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Geodesics in planar Poisson roads random metric

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arxiv 2407.07887 v1 pith:DZGGCRVA submitted 2024-07-10 math.PR math.MG

classification math.PRmath.MG
keywords roadsgeodesicsgeodesickendallmathbbmetricpointspoisson
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abstract

We study the structure of geodesics in the fractal random metric constructed by Kendall from a self-similar Poisson process of roads (i.e, lines with speed limits) in $\mathbb{R}^2$. In particular, we prove a conjecture of Kendall stating that geodesics do not pause en route, i.e, use roads of arbitrary small speed except at their endpoints. It follows that the geodesic frame of $\left(\mathbb{R}^2,T\right)$ is the set of points on roads. We also consider geodesic stars and hubs, and give a complete description of the local structure of geodesics around points on roads. Notably, we prove that leaving a road by driving off-road is never geodesic.

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  1. The scaling limit of planar maps with large faces

    math.PR 2025-01 accept novelty 8.0 of 10

    Large Boltzmann planar maps with a stable exponent alpha converge in the Gromov-Hausdorff-Prokhorov sense to an explicit random compact metric space S_alpha of Hausdorff dimension 2 alpha.

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