论文标题
通过多路径下调有效地产生高维的纠缠
Efficient generation of high-dimensional entanglement through multi-path downconversion
论文作者
论文摘要
高维纠缠有望极大地提高量子通信的性能,并使量子纠缠无法实现量子优势。但是,巨大的挑战之一是高维纠缠来源的可靠生产,分销和本地认证。在本文中,我们提出了一种能够产生具有极高高度可扩展性,控制和质量的量子状态的光学设置,该量子与新颖的认证技术一起实现了迄今为止记录的最高纠缠量。我们以$ 32 $的空间维度展示了与最大纠缠状态的记录保真度($ f = 0.933 \ pm0.001 $),并引入测量有效方案以证明形成的纠缠($ e_ {of} = 3.728 \ pm0.006 $)。结合现有的多核纤维技术,我们的结果将为建造高维量子网络奠定坚实的基础。
High-dimensional entanglement promises to greatly enhance the performance of quantum communication and enable quantum advantages unreachable by qubit entanglement. One of the great challenges, however, is the reliable production, distribution and local certification of high-dimensional sources of entanglement. In this article, we present an optical setup capable of producing quantum states with an exceptionally high-level of scalability, control and quality, that, together with novel certification techniques, achieve the highest amount of entanglement recorded so far. We showcase entanglement in $32$-spatial dimensions with record fidelity to the maximally entangled state ($F=0.933\pm0.001$) and introduce measurement efficient schemes to certify entanglement of formation ($E_{oF}=3.728\pm0.006$). Combined with the existing multi-core fibre technology, our results will lay a solid foundation for the construction of high-dimensional quantum networks.