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TWO-PARTY QUANTUM PRIVACY COMPARISON WITH POLARIZATION-ENTANGLED BELL STATES AND THE COHERENT STATES

机译:具有极化纠缠的Bell态和相干态的两方量子隐私比较

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摘要

We propose a protocol of quantum privacy comparison with polarization-entangled Bel-1 states and the coherent states. One of two legitimate participants, Alice, prepares polarization-entangled Bell states and keeps one photon of each photon pair and sends the other photons to the third party, Charlie. Receiving the photons, Charlie perform-s single-photon transformation operations on them and then sends them to the other legitimate participant, Bob. Three participants adopt parity analysis method to check the distribution security of Bell states. Exploiting polarization beam splitters and nonlinear interactions mediated by the probe coherent states in Kerr media, Alice and Bob check the parities of their photons using the bases of {|H>, |V>} or {|+>, |->}. On the basis of the parity analysis outcomes and Charlie's publicized information, they can analyze the security of the distributed quantum channel. Confirming secure distribution of the shared Bell states, two participants perform respective parity measurements on the privacy photons and own photons of Bell states, and then send the results to Charlie. According to information provided by two legitimate participants and his single-qubit transformation operations, Charlie compares the privacy information of Alice and Bob and publicizes the conclusion.
机译:我们提出了一种具有偏振纠缠的Bel-1状态和相干状态的量子隐私比较协议。两个合法参与者之一爱丽丝(Alice)准备偏振纠缠的贝尔状态,并保留每个光子对中的一个光子,并将另一个光子发送给第三方查理(Charlie)。查理接收光子,对它们执行单光子转换操作,然后将其发送给其他合法参与者Bob。三名参与者采用奇偶分析方法检查贝尔状态的分布安全性。利用Kerr介质中的探针相干态介导的偏振分束器和非线性相互作用,Alice和Bob使用{| H>,| V>}或{| +>,|->}的基来检查其光子的奇偶性。根据奇偶校验分析结果和Charlie公开的信息,他们可以分析分布式量子通道的安全性。确认共享的贝尔状态的安全分布,两名参与者分别对隐私光子和贝尔状态的自己的光子执行奇偶校验测量,然后将结果发送给Charlie。根据两个合法参与者提供的信息以及他的单量子位转换操作,Charlie比较了Alice和Bob的隐私信息并公布了结论。

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