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Quantum state transfer between three ring-connected atoms

2015/03/04 by Yan-Qing, Guo, Yao Deng, Yao, Deng +4
Computer Science · Physics and Astronomy · #Quantum Information and Cryptography #Quantum optics and atomic interactions #Cold Atom Physics and Bose-Einstein Condensates

paper · pdf · doi:10.48550/arxiv.1503.01242

Abstract

A robust quantum state transfer scheme is discussed for three atoms that are trapped by separated cavities linked via optical fibers in ring-connection. It is shown that, under the effective three-atom Ising model, arbitrary quantum state can be transferred from one atom to another deterministically via an auxiliary atom with maximum unit fidelity. The only required operation for this scheme is replicating turning on/off the local laser fields applied to the atoms for two steps with time cost \frac√(2)πΓ0. The scheme is insensitive to cavity leakage and atomic position due to the condition Δ≈ κ≫ g. Another advantage of this scheme is that the cooperative influence of spontaneous emission and operating time error can reduce the time cost for maximum fidelity and thus speed up the implementation of quantum state transfer.

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