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Complete nondestructive analysis of two-photon six-qubit hyperentangled Bell states assisted by cross-Kerr nonlinearity

机译:交叉克尔非线性技术辅助的双光子六量子位超纠缠贝尔状态的完整无损分析

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摘要

Hyperentanglement, the entanglement in several degrees of freedom (DOFs) of a quantum system, has attracted much attention as it can be used to increase both the channel capacity of quantum communication and its security largely. Here, we present the first scheme to completely distinguish the hyperentangled Bell states of two-photon systems in three DOFs with the help of cross-Kerr nonlinearity without destruction, including two longitudinal momentum DOFs and the polarization DOF. We use cross-Kerr nonlinearity to construct quantum nondemolition detectors which can be used to make a parity-check measurement and analyze Bell states of two-photon systems in different DOFs. Our complete scheme for two-photon six-qubit hyperentangled Bell-state analysis may be useful for the practical applications in quantum information, especially in long-distance high-capacity quantum communication.
机译:超纠缠是量子系统在多个自由度(DOF)中的纠缠,已引起了广泛的关注,因为它可用于大大增加量子通信的信道容量及其安全性。在这里,我们提出了第一种方案,借助交叉Keer非线性而不会破坏,从而完全区分了三个自由度中双光子系统的超纠缠钟形,包括两个纵向动量自由度和极化自由度。我们使用跨Keer非线性来构造量子非拆卸检测器,该检测器可用于进行奇偶校验测量并分析不同自由度中双光子系统的Bell状态。我们完整的两光子六量子位超纠缠贝尔状态分析方案可能对量子信息的实际应用很有用,特别是在长距离大容量量子通信中。

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