Finding Cheeger Cuts in Hypergraphs via Heat Equation
Abstract
Cheeger's inequality states that a tightly connected subset can be extracted from a graph using an eigenvector of the normalized Laplacian associated with . More specifically, we can compute a subset with conductance , where is the minimum conductance of a set in . It has recently been shown that Cheeger's inequality can be extended to hypergraphs. However, as the normalized Laplacian of a hypergraph is no longer a matrix, we can only approximate to its eigenvectors; this causes a loss in the conductance of the obtained subset. To address this problem, we here consider the heat equation on hypergraphs, which is a differential equation exploiting the normalized Laplacian. We show that the heat equation has a unique solution and that we can extract a subset with conductance from the solution. An analogous result also holds for directed graphs.
Keywords
Cite
@article{arxiv.1809.04396,
title = {Finding Cheeger Cuts in Hypergraphs via Heat Equation},
author = {Masahiro Ikeda and Atsushi Miyauchi and Yuuki Takai and Yuichi Yoshida},
journal= {arXiv preprint arXiv:1809.04396},
year = {2019}
}
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22 pages