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Preserving entanglement and the fidelity of three-qubit quantum states undergoing decoherence using weak measurement 被引量:4

Preserving entanglement and the fidelity of three-qubit quantum states undergoing decoherence using weak measurement
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摘要 We demonstrate a method to preserve entanglement and improve fidelity of three-qubit quantum states undergoing amplitude-damping decoherence using weak measurement and quantum measurement reversal. It is shown that we are able to enhance entanglement to the greatest extent, and to circumvent entanglement sudden death by increasing the weak measurement strength both for the GHZ state and the W state. The weak measurement technique can also enhance the fidelity to the quantum region and even close to 1 for the whole range of the decoherence parameter in both of the two cases. In addition, the W state can maintain more fidelity than the GHZ state in the protection protocol. However, the GHZ state has a higher success probability than the W state. We demonstrate a method to preserve entanglement and improve fidelity of three-qubit quantum states undergoing amplitude-damping decoherence using weak measurement and quantum measurement reversal. It is shown that we are able to enhance entanglement to the greatest extent, and to circumvent entanglement sudden death by increasing the weak measurement strength both for the GHZ state and the W state. The weak measurement technique can also enhance the fidelity to the quantum region and even close to 1 for the whole range of the decoherence parameter in both of the two cases. In addition, the W state can maintain more fidelity than the GHZ state in the protection protocol. However, the GHZ state has a higher success probability than the W state.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第2期80-86,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No.11074072) the Natural Science Foundation of Hunan Province of China (Grant No.10JJ3088) the Major Program for the Research Foundation of the Education Bureau of Hunan Province of China (Grant No.10A026) the Program for the Research Foundation of the Education Bureau of Hunan Province of China (Grant No.10C0658)
关键词 entanglement protection quantum fidelity weak measurement entanglement protection, quantum fidelity, weak measurement
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