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Protecting the entanglement of two-qubit over quantum channels with memory via weak measurement and quantum measurement reversal 被引量:2
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作者 王美姣 夏云杰 +4 位作者 杨阳 曹连振 张钦伟 李英德 赵加强 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第11期203-211,共9页
Based on the quantum technique of the weak measurement and quantum measurement reversal(WMR),we propose a scheme to protect entanglement for an entangled two-qubit pure state from four typical quantum noise channels w... Based on the quantum technique of the weak measurement and quantum measurement reversal(WMR),we propose a scheme to protect entanglement for an entangled two-qubit pure state from four typical quantum noise channels with memory,i.e.,the amplitude damping channel,the phase damping channel,the bit flip channel,and the depolarizing channel.For a given initial state |Ψ>=a |00>+d|11>,it is found that the WMR operation indeed helps to protect entanglement from the above four quantum channels with memory,and the protection effect of WMR scheme is better when the coefficient a is small.For the other initial state |φ>=b|01>+c|10>,the effect of the protection scheme is the same regardless of the coefficient b and the WMR operation can protect entanglement in the amplitude damping channel with memory.Moreover,the protection of entanglement in quantum noise channels without memory in contrast to the results of the channels with memory is more effective.For |Ψ> or |φ>,we also find that the memory parameters play a significant role in the suppression of entanglement sudden death and the initial entanglement can be drastically amplified.Another more important result is that the relationship between the concurrence,the memory parameter,the weak measurement strength,and quantum measurement reversal strength is found through calculation and discussion.It provides a strong basis for the system to maintain maximum entanglement in the nosie channel. 展开更多
关键词 quantum entanglement weak measurement and quantum measurement reversal quantum channel with memory CONCURRENCE
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基于弱测量与无相互作用测量的量子佯谬 被引量:1
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作者 任喜军 王沛 《科学通报》 EI CAS CSCD 北大核心 2023年第27期3573-3581,共9页
作为一个有效的数学工具,量子理论成功地描述了微观粒子世界的行为.然而,量子理论所描述的微观世界中的很多现象与基于日常逻辑的理解相违反,因此对于这个理论的解释困扰了无数的物理学者,而对于这些反常佯谬[1]的分析理解也构成了深入... 作为一个有效的数学工具,量子理论成功地描述了微观粒子世界的行为.然而,量子理论所描述的微观世界中的很多现象与基于日常逻辑的理解相违反,因此对于这个理论的解释困扰了无数的物理学者,而对于这些反常佯谬[1]的分析理解也构成了深入理解量子理论的一个重要课题. 展开更多
关键词 quantum coherence quantum amplitude quantum weak measurement quantum interaction-free measurement quantum Cheshire cat
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