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Multidimensional entanglement transport through single-mode fiber

机译:通过单模光纤多维纠缠运输

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摘要

The global quantum network requires the distribution of entangled states over long distances, with substantial advances already demonstrated using polarization. While Hilbert spaces with higher dimensionality, e.g., spatial modes of light, allow higher information capacity per photon, such spatial mode entanglement transport requires custom multimode fiber and is limited by decoherence-induced mode coupling. Here, we circumvent this by transporting multidimensional entangled states down conventional single-mode fiber (SMF). By entangling the spin-orbit degrees of freedom of a biphoton pair, passing the polarization (spin) photon down the SMF while accessing multiple orbital angular momentum (orbital) subspaces with the other, we realize multidimensional entanglement transport. We show high-fidelity hybrid entanglement preservation down 250 m SMF across multiple 2 × 2 dimensions, confirmed by quantum state tomography, Bell violation measures, and a quantum eraser scheme. This work offers an alternative approach to spatial mode entanglement transport that facilitates deployment in legacy networks across conventional fiber.
机译:全局量子网络需要长距离分布缠结状态,使用极化已经证明了实质性的进步。虽然Hilbert具有较高维度的空间,例如光线模式,但是每光子的空间模式允许更高的信息容量,这种空间模式纠缠传输需要定制多模光纤,并且受到破板引起的模式耦合的限制。在这里,我们通过将多维缠结状态下载传统的单模光纤(SMF)来规避这一点。通过缠绕双相对的自由度的自由度,在访问多个轨道角动量(轨道)子空间的同时通过偏振(旋转)光子,我们实现多维纠缠运输。我们将高保真混合纠缠保存下来250米SMF跨越多个2×2尺寸,由量子断层扫描,钟侵蚀措施和量子橡皮擦方案确认。这项工作提供了一种可替代的空间模式纠缠传输方法,便于在传统光纤中促进遗留网络中的部署。

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