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Hyper-entanglement preservation in quantum optical circuits

机译:量子光电路中的超纠缠保留

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Secure optical data links can be implemented using quantum communication (QC) protocols that offer physical-layer encryption without the mathematical complexity of traditional cryptography. Data encoding can be achieved using polarization entanglement and it is further proposed to obtain additional degrees of freedom for each single particle quantum state by using hyper-entanglement. For example, multiple carrier signals arriving at the same time can be assigned specific frequencies in the 100 GHz International Telecommunication Union (ITU) grid and be processed simultaneously by a receiver that uses a hyperspectral quantum optical circuit. In this paper, we address preservation of hyper-entanglement as the signals propagate through optical components of the quantum circuits and encounter their realistic properties.
机译:可以使用量子通信(QC)协议实现安全的光学数据链路,该协议可提供物理层加密,而无需传统加密的数学复杂性。数据编码可以使用极化纠缠来实现,并且进一步建议通过使用超纠缠为每个单个粒子量子状态获得额外的自由度。例如,可以在100 GHz国际电信联盟(ITU)网格中为同时到达的多个载波信号分配特定频率,并由使用高光谱量子光电路的接收器同时进行处理。在本文中,当信号通过量子电路的光学组件传播并遇到其实际特性时,我们将解决超纠缠的问题。

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