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星型量子网络中n-局域性的实验违背

Experimental violation of n-locality in a star quantum network.

作者信息

Poderini Davide, Agresti Iris, Marchese Guglielmo, Polino Emanuele, Giordani Taira, Suprano Alessia, Valeri Mauro, Milani Giorgio, Spagnolo Nicolò, Carvacho Gonzalo, Chaves Rafael, Sciarrino Fabio

机构信息

Dipartimento di Fisica, Sapienza Università di Roma, P.le Aldo Moro 5, I-00185, Roma, Italy.

International Institute of Physics & School of Science and Technology, Federal University of Rio Grande do Norte, 59078-970, P. O. Box 1613, Natal, Brazil.

出版信息

Nat Commun. 2020 May 18;11(1):2467. doi: 10.1038/s41467-020-16189-6.

Abstract

The launch of a satellite capable of distributing entanglement through long distances and the first loophole-free violation of Bell inequalities are milestones indicating a clear path for the establishment of quantum networks. However, nonlocality in networks with independent entanglement sources has only been experimentally verified in simple tripartite networks, via the violation of bilocality inequalities. Here, by using a scalable photonic platform, we implement star-shaped quantum networks consisting of up to five distant nodes and four independent entanglement sources. We exploit this platform to violate the chained n-locality inequality and thus witness, in a device-independent way, the emergence of nonlocal correlations among the nodes of the implemented networks. These results open new perspectives for quantum information processing applications in the relevant regime where the observed correlations are compatible with standard local hidden variable models but are non-classical if the independence of the sources is taken into account.

摘要

一颗能够进行长距离纠缠分发的卫星的发射,以及首次无漏洞地违反贝尔不等式,都是里程碑事件,为量子网络的建立指明了一条清晰的道路。然而,具有独立纠缠源的网络中的非定域性仅在简单的三方网络中通过违反双定域性不等式进行了实验验证。在这里,通过使用一个可扩展的光子平台,我们实现了由多达五个远程节点和四个独立纠缠源组成的星形量子网络。我们利用这个平台违反链式n定域性不等式,从而以一种与设备无关的方式见证所实现网络节点之间非定域关联的出现。这些结果为量子信息处理应用开辟了新的前景,在相关领域中,观察到的关联与标准局域隐变量模型兼容,但如果考虑到源的独立性则是非经典的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83ca/7235259/fd6150fc5364/41467_2020_16189_Fig1_HTML.jpg

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