Measurement-Device-Independent Entanglement Witness of Tripartite Entangled States and Its Applications

Entanglement witness is of great importance in characterizing quantum systems. The imperfections in conventional entanglement witness schemes could lead to the misidentification of a separated state as an entangled state. Measurement-device-independent entanglement witness (MDIEW) has been proposed...

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Veröffentlicht in:Physical review letters 2020-04, Vol.124 (16), p.160503-160503, Article 160503
Hauptverfasser: Li, Zheng-Da, Zhao, Qi, Zhang, Rui, Liu, Li-Zheng, Yin, Xu-Fei, Zhang, Xingjian, Fei, Yue-Yang, Chen, Kai, Liu, Nai-Le, Xu, Feihu, Chen, Yu-Ao, Li, Li, Pan, Jian-Wei
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Sprache:eng
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Zusammenfassung:Entanglement witness is of great importance in characterizing quantum systems. The imperfections in conventional entanglement witness schemes could lead to the misidentification of a separated state as an entangled state. Measurement-device-independent entanglement witness (MDIEW) has been proposed and demonstrated to resolve the imperfect measurement devices. So far, however, the MDIEW has been restricted to a two-party qubit entangled state. Here, for the first time, we demonstrate MDIEW for multipartite entangled states. We experimentally detect the genuine entanglement and the entanglement structure of a tripartite entangled state based on an eight-photon interferometry. Furthermore, with the verified multipartite entangled state, we demonstrate quantum randomness generation and open-destination quantum key distribution in an measurement-device-independent manner. Our research presents an important step toward building a robust and secure quantum network.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.124.160503