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首页> 外文期刊>Physical Review, A >Self-assisted complete maximally hyperentangled state analysis via the cross-Kerr nonlinearity
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Self-assisted complete maximally hyperentangled state analysis via the cross-Kerr nonlinearity

机译:通过跨Keer非线性进行自辅助的完全最大超纠缠态分析

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摘要

We present two complete maximally hyperentangled state analysis protocols for photons entangled in the polarization and spatial-mode degrees of freedom. The first protocol is a hyperentangled Bell state analysis scheme for two photons, and the second is a hyperentangled Greenberger-Horne-Zeilinger (GHZ) state analysis scheme for three photons. In each scheme, a set of mutually orthogonal hyperentangled basis states are completely and deterministically discriminated with the aid of cross-Kerr nonlinearities and linear optics. We also generalize the schemes to unambiguously analyze the N-photon hyperentangled GHZ state. Compared with previous protocols, our schemes greatly simplify the discrimination process and reduce the requirements on nonlinearities by using the measured spatial-mode state to assist in the analysis of the polarization state. These advantages make our schemes useful for practical applications in long-distance high-capacity quantum communication.
机译:我们为纠缠在偏振和空间模式自由度中的光子提出了两个完整的最大超纠缠状态分析协议。第一个协议是用于两个光子的超纠缠贝尔状态分析方案,第二个协议是用于三个光子的超纠缠Greenberger-Horne-Zeilinger(GHZ)状态分析方案。在每种方案中,借助于Cross-Kerr非线性和线性光学,可以完全确定地区分一组相互正交的超纠缠基态。我们还推广了这些方案,以明确分析N光子超纠缠GHZ状态。与以前的协议相比,我们的方案通过使用测得的空间模式状态来协助极化状态的分析,大大简化了鉴别过程并减少了对非线性的要求。这些优点使我们的方案可用于长距离大容量量子通信中的实际应用。

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