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Non-Hermitian Quantum Annealing in the Antiferromagnetic Ising Chain

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arxiv 1302.6555 v1 pith:BJGCZ2AA submitted 2013-02-26 quant-ph math-phmath.MPphysics.comp-ph

Non-Hermitian Quantum Annealing in the Antiferromagnetic Ising Chain

classification quant-ph math-phmath.MPphysics.comp-ph
keywords quantumannealingalgorithmantiferromagneticapproachchainisingnon-hermitian
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A non-Hermitian quantum optimization algorithm is created and used to find the ground state of an antiferromagnetic Ising chain. We demonstrate analytically and numerically (for up to N=1024 spins) that our approach leads to a significant reduction of the annealing time that is proportional to $\ln N$, which is much less than the time (proportional to $N^2$) required for the quantum annealing based on the corresponding Hermitian algorithm. We propose to use this approach to achieve similar speed-up for NP-complete problems by using classical computers in combination with quantum algorithms.

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