论文标题
嘈杂的量子输入漏洞与测量设备无关的纠缠见证人
Noisy quantum input loophole in measurement-device-independent entanglement witnesses
论文作者
论文摘要
纠缠目击者构成了一种有效的方法,可以在实验室中局部检测纠缠,而无需先前了解全密度矩阵。但是,在存在错误的测量或检测器丢失的情况下,可以错误地表明可分离状态在此类检测中纠缠在一起。即使在错误的测量和特定类型的有损探测器下,与测量设备设备的纠缠证人(MDI-EWS)也从未检测到假纠缠。在忠实地检测使用MDI -EWS的纠缠的情况下,一个至关重要的假设是,产生“量子输入”的制备设备是要检测到纠缠的量子状态的输入的输入,这是完美的,并且在传播过程中没有噪音。在这里,我们放松这些假设,并为研究噪声对量子输入的影响提供了一个通用框架,调用了均匀和不均匀的噪声模型。我们在均匀的噪声图上得出了足够的条件,以保留MDI-EWS的特征。我们发现,在不均匀和纠缠的噪音的背景下,即使是MDI-EWS,假纠缠也可以检测。我们还研究了局部噪声的各种范式模型,并发现了沃纳州类别中揭示纠缠的条件。
Entanglement witnesses form an effective method to locally detect entanglement in the laboratory without having the prior knowledge of the full density matrix. However, separable states can be erroneously indicated as entangled in such detections in the presence of wrong measurements or loss in detectors. Measurement-device-independent entanglement witnesses (MDI-EWs) never detect fake entanglement even under wrong measurements and for a particular kind of lossy detectors. A crucial assumption in the case of faithful detection of entanglement employing MDI-EWs is that the preparation devices producing "quantum inputs" - which are inputs additional to the quantum state whose entanglement is to be detected - are perfect and there is no noise during their transmission. Here, we relax these assumptions and provide a general framework for studying the effect of noise on the quantum inputs, invoking uniform and non-uniform noise models. We derive sufficient conditions on the uniform noisy map for retaining the characteristic of MDI-EWs. We find that in the context of non-uniform and entangling noise, fake entanglement detection is possible even by MDI-EWs. We also investigate various paradigmatic models of local noise and find conditions of revealing entanglement in the class of Werner states.