arXiv · 1803.07097
$\tilde{O}(n^{1/3})$-Space Algorithm for the Grid Graph Reachability Problem
Abstract
The directed graph reachability problem takes as input an $n$-vertex directed graph $G=(V,E)$, and two distinguished vertices $s$ and $t$. The problem is to determine whether there exists a path from $s$ to $t$ in $G$. This is a canonical complete problem for class NL. Asano et al. proposed an $\tilde{O}(\sqrt{n})$ space and polynomial time algorithm for the directed grid and planar graph reachability problem. The main result of this paper is to show that the directed graph reachability problem restricted to grid graphs can be solved in polynomial time using only $\tilde{O}(n^{1/3})$ space.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Ryo Ashida, Kotaro Nakagawa. 2019-09-20. $\tilde{O}(n^{1/3})$-Space Algorithm for the Grid Graph Reachability Problem. https://doi.org/10.4230/lipics.socg.2018.5
Cite the original work for its findings. Save a collection to share your selection of sources.