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增光子二模纠缠相干态的纠缠特性及其通过腔量子电动力学的制备(英文) 被引量:4

Entanglement Properties of Photon-added Two-mode Entangled Coherent States and Their Preparations via Cavity Quantum Electrodynamics
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摘要 分析了增光子二模纠缠相干态的纠缠特性,得到共生纠缠度的解析表示式.结果表明:增光子二模纠缠相干态的共生纠缠度与叠加态的相位有非常灵敏的关系.提出了一种制备增光子相干态和增光子二模纠缠相干态的方法,其制备过程为首先把增光子相干态转化为相干态与真空态一种特殊的叠加态(叠加系数与相干态振幅有关),再通过位于高Q腔内的原子与经典激光场的相互作用,从而实现增光子相干态的制备.通过一个飞行原子先后与两个光腔中光场相互作用可以实现增光子二模纠缠相干态的制备. Entanglment properties of photon-added two-mode entangled coherent states are analyzed and analytical expression of the concurrence entanglement is obtained.The results show that the concurrence of the photon-added entangled coherent states is very sensitive to the superposition phase.Schemes for preparation of photon-added coherent states and photon-added two-mode entangled coherent states are also proposed.The preparation procession of the photon-added coherent states is that the photon-added coherent states are firstly tansformed into a superposition state of coherent state and vacuum state(the superposition coefficient is associated with amplitude of the coherent state),then by applying the interaction of atom inside high-Q cavity with a classical light,finally added coherent states of cavity field is prepared.Preparation of photon-added two-mode entangled coherent states of cavity fields is based on interaction of the flying atom with two cavity fields.
出处 《光子学报》 EI CAS CSCD 北大核心 2012年第11期1342-1346,共7页 Acta Photonica Sinica
基金 The Natural Science Foundation of Anhui Province of China(No.090412060)
关键词 增光子相干态 增光子二模纠缠相干态 腔量子电动力学 Photon-added coherent states Photon-added entangled coherent states Cavity quantum electrodynamics
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  • 1吴道永.双光子过程耦合腔系统中光场的量子特性[J].光子学报,2012,41(9):1104-1107. 被引量:6
  • 2ZHOU J, FAN H Y, SOGN J. Photon-subtracted Two-mode Squeezed Thermal State and its Photon-number Distribution [J]. International Journal Of Theoretical Physics, 2012,51 ( 5 ) : 15 91-15 9 9. 被引量:1
  • 3FAN H Y, YU G C. Three-mode Squeezed Vacuum State in Fock Space as an Entangled State [J]. Physical Review A, 65(3) :033829. 被引量:1
  • 4ANDRE R R CARVALHO, FLORIAN MINTERT. ANDREAS BUCHLEITNER. Decoherence and Multipartite Entanglement [J]. Physical Review Letters, 2004,93(23) : 230501. 被引量:1
  • 5RICARDO Wickert, Nadja Kolb Bernardes, Peter van Loock. Entanglement properties of Optical coherent States under Amplitude Damping [J]. Physical Review A, 2010,81 ( 6 ) : 062344. 被引量:1
  • 6AGARWAL G. S, BISWAS A. Nonclassicality and Decoherence of Photon-subtracted Squeezed State [J]. Physical Review A,2007,75(3) :032104. 被引量:1
  • 7ZHANG H L, JIA F, XU X X, et al. Nonelassicality and Decoherence of Photon-subtraction Squeezing-enhanced Thermal State [J]. International Journal Of Theoretical Physics, 2012,51 (10) : 3330-3343. 被引量:1
  • 8XU X X,HU L Y,FAN H Y. Photon-added Squeezed Thermal States: Statistical Properties and its Decoherence in a Photon-loss Channel[J]. Optics communications, 2010 , 283 ( 9 ) : 1801-1809. 被引量:1
  • 9卢道明.The entropic squeezing of superposition of two arbitrary coherent states[J].Chinese Physics B,2008,17(2):618-623. 被引量:7
  • 10陈美锋,马宋设.远程制备双原子纠缠态(英文)[J].光子学报,2008,37(1):188-191. 被引量:4

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