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Optical parity gate and a wide range of entangled states generation 被引量:1

Optical parity gate and a wide range of entangled states generation
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摘要 Generating entangled states efficiently is a hot topic in the area of quantum information science.With the approach presented in this paper,a general parity gate could be realized and a wide range of entangled states,including GHZ state,W state,Dicke state,arbitrary graph state and locally maximally entanglable states,can be generated flexibly.The generation of GHZ state,W state,and Dicke state is probabilistic but heralded and the total success probability is unit.In addition,the arbitrary graph state and locally maximally entanglable states generation is deterministic,flexible,and highly efficient.Especially,with the"simultaneous"generation pattern,the complexity of the graph state generation and locally maximally entanglable states generation could be reduced greatly,providing a more efficient and feasible way to generate the entangled states. Generating entangled states efficiently is a hot topic in the area of quantum information science. With the approach presented in this paper, a general parity gate could be realized and a wide range of entangled states, including GHZ state, W state, Dicke state, arbitrary graph state and locally maximally entanglable states, can be generated flexibly. The generation of GHZ state, W state, and Dicke state is probabilistic but heralded and the total success probability is unit. In addition, the arbitrary graph state and locally maximally entanglable states generation is deterministic, flexible, and highly efficient. Especially, with the "simultaneous" generation pattern, the complexity of the graph state generation and locally maximally entanglable states generation could be reduced greatly, providing a more efficient and feasible way to generate the entangled states.
作者 LIN Qing
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第4期30-39,共10页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.11005040) the Program for New Century Excellent Talents in Fujian Province University(Grant No.2012FJ-NCET-ZR04) the Natural Science Foundation of Fujian Province of China(Grant No.2014J01015) the Promotion Program for Young and Middle-aged Teacher in Science and Technology Research of Huaqiao University(Grant No.ZQN-PY113)
关键词 纠缠态 图形状态 栅极 奇偶 光学 量子信息科学 GHZ态 成功概率 parity gate, entangled states, cross phase modulation, c-path gate, quantum information
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