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Efficient entanglement concentration for arbitrary less-entangled NOON state assisted by single photons 被引量:1
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作者 周澜 盛宇波 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第2期98-105,共8页
We put forward two efficient entanglement concentration protocols (ECPs) for arbitrary less-entangled NOON state. Both ECPs only require one pair of less-entangled NOON state and an auxiliary photon. In the first EC... We put forward two efficient entanglement concentration protocols (ECPs) for arbitrary less-entangled NOON state. Both ECPs only require one pair of less-entangled NOON state and an auxiliary photon. In the first ECR the auxiliary photon is shared by two parties, while in the second ECP, the auxiliary photon is only possessed by one party, which can increase the practical success probability by avoiding the transmission loss and simplify the operations. Moreover, both ECPs can be used repeatedly to get a high success probability. Based on the above features, our two ECPs, especially the second one, may be useful in the quantum information processing. 展开更多
关键词 quantum communication NOON state entanglement concentration cross-kerr nonlinearity
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Efficient N-particle W state concentration with different parity check gates 被引量:4
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作者 SHENG YuBo PAN Jun +2 位作者 GUO Rui ZHOU Lan WANG Lei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第6期55-65,共11页
We present a universal way to concentrate an arbitrary N-particle less-entangled W state into a maximally entangled W state with different parity check gates.It comprises two protocols.The first protocol is based on t... We present a universal way to concentrate an arbitrary N-particle less-entangled W state into a maximally entangled W state with different parity check gates.It comprises two protocols.The first protocol is based on the linear optical elements,say the partial parity check gate and the second protocol uses the quantum nondemolition measurement to construct the complete parity check gate.Both protocols can achieve the concentration task.These protocols have several advantages.First,they can obtain a maximally entangled W state only with the help of some single photons,which greatly reduces the number of entanglement resources.Second,in the first protocol,only linear optical elements are required,which is feasible with current techniques.Third,the second protocol can be repeated to perform the concentration step and obtain a higher success probability.All these advantages make it quite useful in current quantum communication and computation applications. 展开更多
关键词 奇偶校验 N粒子 w 量子非破坏性测量 浓度 光学元件 成功概率 应用程序
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