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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Testing quantum devices: Practical entanglement verification in bipartite optical systems
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Testing quantum devices: Practical entanglement verification in bipartite optical systems

机译:测试量子设备:二分光学系统中的实际纠缠验证

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We present a method to test quantum behavior of quantum information processing devices, such as quantum memories, teleportation devices, channels, and quantum key distribution protocols. The test of quantum behavior can be phrased as the verification of effective entanglement. Necessary separability criteria are formulated in terms of a matrix of expectation values in conjunction with the partial transposition map. Our method is designed to reduce the resources for entanglement verification. A particular protocol based on coherent states and homodyne detection is used to illustrate the method. A possible test for the quantum nature of memories using two nonorthogonal signal states arises naturally. Furthermore, closer inspection of the measurement process in terms of the Stokes operators reveals a security threat for quantum key distribution involving phase reference beams.
机译:我们提出一种方法来测试量子信息处理设备的量子行为,例如量子存储器,隐形传送设备,通道和量子密钥分配协议。量子行为的测试可以表述为有效纠缠的验证。根据期望值矩阵结合部分换位图来制定必要的可分离性标准。我们的方法旨在减少纠缠验证的资源。基于相干态和零差检测的特定协议用于说明该方法。自然会出现使用两个非正交信号状态的存储器量子性质的可能测试。此外,根据斯托克斯算子对测量过程进行更仔细的检查发现,涉及相位参考光束的量子密钥分配存在安全威胁。

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