《计算机应用研究》|Application Research of Computers

受控循环远程态制备

Controlled cyclic remote state preparation

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作者 彭家寅
机构 内江师范学院 数学与信息科学学院,四川 内江 641100
统计 摘要被查看 次,已被下载
文章编号 1001-3695(2020)09-048-2802-04
DOI 10.19734/j.issn.1001-3695.2019.05.0155
摘要 为了解决多方量子通信问题,首先提出一种构造十粒子纠缠态的方法,并籍此构造出一个3<i>n</i>+1粒子纠缠态。其次,以十粒子纠缠态为量子信道,提出一个三方受控循环远程制备协议。该协议在监察者David的控制下,Alice能为Bob远程制备一个任意单粒子态,Bob能够在Charlie处远程制备一个任意单粒子态,Charlie也能为Alice远程制备任意单粒子态。进一步,借助3<i>n</i>+1粒子纠缠态,将此循环协议推广到任意<i>n</i>方受控循环远程态制备情形。在远程态制备过程中,每个发送者充分利用各自掌握的信息和前馈策略来构造恰当的测量基,通过经典通信和局域操作,就能成功实现任意单粒子态的远程制备。
关键词 量子通信; 受控远程态制备; 循环远程态制备; 多粒子纠缠态; 前馈测量策略
基金项目 国家教育部数学与应用数学专业综合改革资助项目(ZG0464)
四川省科技厅重点科技项目(2006J13-035)
四川省数学与应用数学专业综合改革资助项目(01249)
国家自然科学基金资助项目(11071178)
本文URL http://www.arocmag.com/article/01-2020-09-048.html
英文标题 Controlled cyclic remote state preparation
作者英文名 Peng Jiayin
机构英文名 School of Mathematics & Information Science,Neijiang Normal University,Neijiang Sichuan 641100,China
英文摘要 In order to solve the problem of multi-party quantum communication, this paper first proposed a method to construct a ten-particle entangled state, and then constructed a 3<i>n</i>+1-particle entangled state. Secondly, this paper proposed a tripartite controlled cyclic remote preparation protocol using ten-particle entangled state as quantum channel. The protocol showed that under the control of the supervisor David, Alice could remotely prepare an arbitrary single-particle state for Bob, Bob could prepare an arbitrary single-particle state on Charlie's site, and Charlie could also remotely prepare an arbitrary single-particle state for Alice. Furthermore, by using the 3<i>n</i>+1-particle entangled state, the paper generalized this cyclic protocol to the case of arbitrary <i>n</i>-party controlled cyclic remote state preparation. In the process of remote state preparation, each sender made full use of their own information and feedforward strategy to construct an appropriate measurement base. By using classical communication and local operation, the scheme successfully realized remote preparation of arbitrary single-particle states.
英文关键词 quantum communication; controlled remote state preparation; cyclic remote state preparation; multi-particle entangled state; feedforward measurement strategy
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收稿日期 2019/5/1
修回日期 2019/6/28
页码 2802-2805,2814
中图分类号 TP301
文献标志码 A