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Distribution of hybrid entanglement and hyperentanglement with time-bin for secure quantum channel under noise via weak cross-Kerr nonlinearity

机译:弱交叉Kerr非线性在带噪声的安全量子通道中带时间轴的混合纠缠和超纠缠分布

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摘要

We design schemes to generate and distribute hybrid entanglement and hyperentanglement correlated with degrees of freedom (polarization and time-bin) via weak cross-Kerr nonlinearities (XKNLs) and linear optical devices (including time-bin encoders). In our scheme, the multi-photon gates (which consist of XKNLs, quantum bus [qubus] beams, and photon-number-resolving [PNR] measurement) with time-bin encoders can generate hyperentanglement or hybrid entanglement. And we can also purify the entangled state (polarization) of two photons using only linear optical devices and time-bin encoders under a noisy (bit-flip) channel. Subsequently, through local operations (using a multi-photon gate via XKNLs) and classical communications, it is possible to generate a four-qubit hybrid entangled state (polarization and time-bin). Finally, we discuss how the multi-photon gate using XKNLs, qubus beams, and PNR measurement can be reliably performed under the decoherence effect.
机译:我们设计方案,通过弱的克尔非线性(XKNLs)和线性光学设备(包括时标编码器)生成和分布与自由度(偏振和时域)相关的混合纠缠和超纠缠。在我们的方案中,带有时区编码器的多光子门(由XKNL,量子总线[qubus]束和光子数分辨[PNR]测量组成)可以生成超纠缠或混合纠缠。而且,我们还可以仅使用线性光学设备和时分编码器在嘈杂(位翻转)通道下净化两个光子的纠缠态(偏振)。随后,通过本地操作(通过XKNL使用多光子门)和经典通信,可以生成四比特混合纠缠态(极化和时分)。最后,我们讨论了如何在去相干效应下可靠地执行使用XKNL,qubus光束和PNR测量的多光子门。

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