Quantum Advantage for the LOCAL Model in Distributed Computing
October 25, 2018 Β· Declared Dead Β· π Symposium on Theoretical Aspects of Computer Science
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Authors
FranΓ§ois Le Gall, Harumichi Nishimura, Ansis Rosmanis
arXiv ID
1810.10838
Category
quant-ph: Quantum Computing
Cross-listed
cs.CC,
cs.DC
Citations
38
Venue
Symposium on Theoretical Aspects of Computer Science
Last Checked
6 months ago
Abstract
There are two central models considered in (fault-free synchronous) distributed computing: the CONGEST model, in which communication channels have limited bandwidth, and the LOCAL model, in which communication channels have unlimited bandwidth. Very recently, Le Gall and Magniez (PODC 2018) showed the superiority of quantum distributed computing over classical distributed computing in the CONGEST model. In this work we show the superiority of quantum distributed computing in the LOCAL model: we exhibit a computational task that can be solved in a constant number of rounds in the quantum setting but requires $Ξ©(n)$ rounds in the classical setting, where $n$ denotes the size of the network.
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