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Joint remote preparation of an arbitrary five-qubit Brown state via non-maximally entangled channels

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【作者】 常利伟郑世慧谷利泽肖达杨义先

【Author】 Chang Li-Wei;Zheng Shi-Hui;Gu Li-Ze;Xiao Da;Yang Yi-Xian;Information Security Center,Beijing University of Posts and Telecommunications;National Engineering Laboratory for Disaster Backup and Recovery,Beijing University of Posts and Telecommunications;

【机构】 Information Security Cente,Beijing University of Posts and TelecommunicationsNational Engineering Laboratory for Disaster Backup and Recovery Beijing University of Posts and TelecommunicationsInformation Security Center,Beijing University of Posts and Telecommunications

【摘要】 We firstly present a novel scheme for deterministic joint remote state preparation of an arbitrary five-qubit Brown state using four Greenberg–Horme–Zeilinger(GHZ)entangled states as the quantum channel.The success probability of this scheme is up to 1,which is superior to the existing ones.Moreover,the scheme is extended to the generalized case where three-qubit and four-qubit non-maximally entangled states are taken as the quantum channel.We simultaneously employ two common methods to reconstruct the desired state.By comparing these two methods,we draw a conclusion that the first is superior to the second-optimal positive operator-valued measure only taking into account the number of auxiliary particles and the success probability.

【Abstract】 We firstly present a novel scheme for deterministic joint remote state preparation of an arbitrary five-qubit Brown state using four Greenberg–Horme–Zeilinger(GHZ) entangled states as the quantum channel. The success probability of this scheme is up to 1, which is superior to the existing ones. Moreover, the scheme is extended to the generalized case where three-qubit and four-qubit non-maximally entangled states are taken as the quantum channel. We simultaneously employ two common methods to reconstruct the desired state. By comparing these two methods, we draw a conclusion that the first is superior to the second-optimal positive operator-valued measure only taking into account the number of auxiliary particles and the success probability.

【基金】 supported by the National Natural Science Foundation of China(Grant Nos.61370194 and 61202082);the Fundamental Research Funds for the Central Universities of China(Grant Nos.BUPT2012RC0219);the Foundation of Science and Technology of Huawei of China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2014年09期
  • 【分类号】O413.1
  • 【被引频次】3
  • 【下载频次】35
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