Gromov's Approximating Tree and the All-Pairs Bottleneck Paths Problem
Abstract
Given a pointed metric space on points, its Gromov's approximating tree is a 0-hyperbolic pseudo-metric space such that and for all where is the Gromov hyperbolicity of . On the other hand, the all pairs bottleneck paths (APBP) problem asks, given an undirected graph with some capacities on its edges, to find the maximal path capacity between each pair of vertices. In this note, we prove: Computing Gromov's approximating tree for a metric space with points from its matrix of distances reduces to solving the APBP problem on an connected graph with vertices. There is an explicit algorithm that computes Gromov's approximating tree for a graph from its adjacency matrix in quadratic time. Solving the APBP problem on a weighted graph with vertices reduces to finding Gromov's approximating tree for a metric space with points from its distance matrix.
Keywords
Cite
@article{arxiv.2408.05338,
title = {Gromov's Approximating Tree and the All-Pairs Bottleneck Paths Problem},
author = {Anders Cornect and Eduardo Martínez-Pedroza},
journal= {arXiv preprint arXiv:2408.05338},
year = {2025}
}
Comments
Version 2. Minor corrections