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Transferring of a Two-Mode Entangled State Between Two Cavities via Cavity QED

Transferring of a Two-Mode Entangled State Between Two Cavities via Cavity QED
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摘要 我们为零的一件二模式的纠纷转建议一个计划 -- 纠缠的 orone 光子在二之间声明经由原子洞的洞回答反响的相互作用。在我们的建议,以便转移纠缠的状态,我们仅仅为收到电视需要二个相同二水平的原子和 atwo 模式洞移植状态。这个计划不要求 Bell-statemeasurement 并且执行任何转变重建起始的状态。并且转移能以一种简单方式与 100% 成功概率发生。并且为在洞之间州的纠缠的 atwo 模式转的一个网络被建议。这个计划能也被扩大转移洞州的纠缠的 N 模式。 We propose a scheme for transferring of a two-mode entanglement of zero- or one-photon entangled states between two cavities via atom-cavity field resonant interaction. In our proposal, in order to transfer the entangled state, we only need two identical two-level atoms and a two-mode cavity for receiving the teleported state. This scheme does not require Bell-state measurement and performing any transformations to reconstruct the initial state. And the transfer can occur with 100% success probability in a simple manner. And a network for transferring of a two-mode entangled state between cavities is suggested. This scheme can also be extended to transfer N-mode entangled state of cavity.
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第3期451-453,共3页 理论物理通讯(英文版)
基金 * The project supported by National Natural Science Foundation of China under Grant No. 10574001, the Innovation Funds of the Chinese Academy of Sciences, the Educational Developing Project Facing the Twenty-first Century, the Program of the Education Department of Anhui Province under GrantNo. 2004kj029, and the Youth Program of Fu Yang Teachers College under Grant No. 2005LQ04
关键词 两腔场 腔场QED 双模纠缠态 转移方案 谐振作用 transfer, cavity QED, quantum entanglement, resonant interaction
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  • 1A. Einstein, B. Podolsky, and M. Rosen, Phys. Rev. 47 (1935) 777.
  • 2S.J. Bell, Physics, Long Island City, N.Y. (1964) pp. 1- 195.
  • 3C.H. Bennett, G. Brassard, C. Crepeau, R, Jozsa, A. Peres, and W.K. Wootters, Phys. Rev. Lett. 70(1993) 1895.
  • 4C.H. Bennett and S.J. Wiesner, Phys. Rev. Lett. 69 (1992) 2881.
  • 5A.K. Ekert, Phys. Rev. Lett. 67 (1991) 661.
  • 6D. Bouwmeester, J.W. Pan, K. Mattle, et al. Nature (London) 390 (1997) 575.
  • 7D. Boschi, S. Brancai F.D. De Martini, et al, Phys. Rev. Lett. 80 (1998) 1121.
  • 8L. Davidovich, N. Zagury, M. Brune, et al, Phys. Rev. A 50 (1994) R895.
  • 9J.I. Cirac and A.S. Parkins, Phys. Rev. A 50 (1994) R4441.
  • 10S.B. Zheng and G.C. Guo, Phys. Lett. A 232 (1997) 171.

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