Time and Space Efficient Quantum Algorithms for Detecting Cycles and Testing Bipartiteness
October 03, 2016 Β· Declared Dead Β· π Quantum information & computation
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Authors
Chris Cade, Ashley Montanaro, Aleksandrs Belovs
arXiv ID
1610.00581
Category
quant-ph: Quantum Computing
Cross-listed
cs.DS
Citations
24
Venue
Quantum information & computation
Last Checked
5 months ago
Abstract
We study space and time efficient quantum algorithms for two graph problems -- deciding whether an $n$-vertex graph is a forest, and whether it is bipartite. Via a reduction to the s-t connectivity problem, we describe quantum algorithms for deciding both properties in $\tilde{O}(n^{3/2})$ time and using $O(\log n)$ classical and quantum bits of storage in the adjacency matrix model. We then present quantum algorithms for deciding the two properties in the adjacency array model, which run in time $\tilde{O}(n\sqrt{d_m})$ and also require $O(\log n)$ space, where $d_m$ is the maximum degree of any vertex in the input graph.
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