A Quantum Version of SchΓΆning's Algorithm Applied to Quantum 2-SAT
March 22, 2016 Β· Declared Dead Β· π Quantum information & computation
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Authors
Edward Farhi, Shelby Kimmel, Kristan Temme
arXiv ID
1603.06985
Category
quant-ph: Quantum Computing
Cross-listed
cs.CC,
cs.DS
Citations
12
Venue
Quantum information & computation
Last Checked
5 months ago
Abstract
We study a quantum algorithm that consists of a simple quantum Markov process, and we analyze its behavior on restricted versions of Quantum 2-SAT. We prove that the algorithm solves this decision problem with high probability for n qubits, L clauses, and promise gap c in time O(n^2 L^2 c^{-2}). If the Hamiltonian is additionally polynomially gapped, our algorithm efficiently produces a state that has high overlap with the satisfying subspace. The Markov process we study is a quantum analogue of SchΓΆning's probabilistic algorithm for k-SAT.
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