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Detecting genuine multipartite entanglement in steering scenarios

机译:在转向场景中检测真正的多方纠缠

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Einstein-Podolsky-Rosen (EPR) steering is a form of quantum nonlocality which is intermediate between entanglement and Bell nonlocality. EPR steering is a resource for quantum key distribution that is device independent on only one side in that it certifies bipartite entanglement when one party's device is not characterized while the other party's device is fully characterized. In this work, we introduce two types of genuine tripartite EPR steering, and derive two steering inequalities to detect them. In a semi-device-independent scenario where only the dimensions of two parties are assumed, the correlations which violate one of these inequalities also certify genuine tripartite entanglement. It is known that Alice can demonstrate bipartite EPR steering to Bob if and only if her measurement settings are incompatible. We demonstrate that quantum correlations can also detect tripartite EPR steering from Alice to Bob and Charlie, even if Charlie's measurement settings are compatible.
机译:Einstein-Podolsky-Rosen(EPR)操纵是一种量子非局部性的形式,介于纠缠和Bell非局部性之间。 EPR操纵是一种用于量子密钥分发的资源,它仅在一侧与设备无关,因为当一方的设备没有特征而另一方的设备具有充分特征时,它可以证明两方纠缠。在这项工作中,我们介绍了两种真正的三方EPR转向,并得出了两个转向不等式以进行检测。在仅假设两方尺寸的半设备独立场景中,违反这些不等式之一的相关性也证明了真正的三方纠缠。众所周知,当且仅当她的测量设置不兼容时,爱丽丝才能向鲍勃展示双向EPR转向。我们证明,即使Charlie的测量设置兼容,量子相关性也可以检测从Alice到Bob和Charlie的三方EPR控制。

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