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Drone-based entanglement distribution towards mobile quantum networks

Satellites have shown free-space quantum-communication ability; however, they are orbit-limited from full-time all-location coverage. Meanwhile, practical quantum networks require satellite constellations, which are complicated and expensive, whereas the airborne mobile quantum communication may be...

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Autores principales: Liu, Hua-Ying, Tian, Xiao-Hui, Gu, Changsheng, Fan, Pengfei, Ni, Xin, Yang, Ran, Zhang, Ji-Ning, Hu, Mingzhe, Guo, Jian, Cao, Xun, Hu, Xiaopeng, Zhao, Gang, Lu, Yan-Qing, Gong, Yan-Xiao, Xie, Zhenda, Zhu, Shi-Ning
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446934/
https://www.ncbi.nlm.nih.gov/pubmed/34691535
http://dx.doi.org/10.1093/nsr/nwz227
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author Liu, Hua-Ying
Tian, Xiao-Hui
Gu, Changsheng
Fan, Pengfei
Ni, Xin
Yang, Ran
Zhang, Ji-Ning
Hu, Mingzhe
Guo, Jian
Cao, Xun
Hu, Xiaopeng
Zhao, Gang
Lu, Yan-Qing
Gong, Yan-Xiao
Xie, Zhenda
Zhu, Shi-Ning
author_facet Liu, Hua-Ying
Tian, Xiao-Hui
Gu, Changsheng
Fan, Pengfei
Ni, Xin
Yang, Ran
Zhang, Ji-Ning
Hu, Mingzhe
Guo, Jian
Cao, Xun
Hu, Xiaopeng
Zhao, Gang
Lu, Yan-Qing
Gong, Yan-Xiao
Xie, Zhenda
Zhu, Shi-Ning
author_sort Liu, Hua-Ying
collection PubMed
description Satellites have shown free-space quantum-communication ability; however, they are orbit-limited from full-time all-location coverage. Meanwhile, practical quantum networks require satellite constellations, which are complicated and expensive, whereas the airborne mobile quantum communication may be a practical alternative to offering full-time all-location multi-weather coverage in a cost-effective way. Here, we demonstrate the first mobile entanglement distribution based on drones, realizing multi-weather operation including daytime and rainy nights, with a Clauser-Horne-Shimony-Holt S-parameter measured to be 2.41 ± 0.14 and 2.49 ± 0.06, respectively. Such a system shows unparalleled mobility, flexibility and reconfigurability compared to the existing satellite and fiber-based quantum communication, and reveals its potential to establish a multinode quantum network, with a scalable design using symmetrical lens diameter and single-mode-fiber coupling. All key technologies have been developed to pack quantum nodes into lightweight mobile platforms for local-area coverage, and arouse further technical improvements to establish wide-area quantum networks with high-altitude mobile communication.
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spelling pubmed-84469342021-10-21 Drone-based entanglement distribution towards mobile quantum networks Liu, Hua-Ying Tian, Xiao-Hui Gu, Changsheng Fan, Pengfei Ni, Xin Yang, Ran Zhang, Ji-Ning Hu, Mingzhe Guo, Jian Cao, Xun Hu, Xiaopeng Zhao, Gang Lu, Yan-Qing Gong, Yan-Xiao Xie, Zhenda Zhu, Shi-Ning Natl Sci Rev Research Article Satellites have shown free-space quantum-communication ability; however, they are orbit-limited from full-time all-location coverage. Meanwhile, practical quantum networks require satellite constellations, which are complicated and expensive, whereas the airborne mobile quantum communication may be a practical alternative to offering full-time all-location multi-weather coverage in a cost-effective way. Here, we demonstrate the first mobile entanglement distribution based on drones, realizing multi-weather operation including daytime and rainy nights, with a Clauser-Horne-Shimony-Holt S-parameter measured to be 2.41 ± 0.14 and 2.49 ± 0.06, respectively. Such a system shows unparalleled mobility, flexibility and reconfigurability compared to the existing satellite and fiber-based quantum communication, and reveals its potential to establish a multinode quantum network, with a scalable design using symmetrical lens diameter and single-mode-fiber coupling. All key technologies have been developed to pack quantum nodes into lightweight mobile platforms for local-area coverage, and arouse further technical improvements to establish wide-area quantum networks with high-altitude mobile communication. Oxford University Press 2020-01-03 /pmc/articles/PMC8446934/ /pubmed/34691535 http://dx.doi.org/10.1093/nsr/nwz227 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Liu, Hua-Ying
Tian, Xiao-Hui
Gu, Changsheng
Fan, Pengfei
Ni, Xin
Yang, Ran
Zhang, Ji-Ning
Hu, Mingzhe
Guo, Jian
Cao, Xun
Hu, Xiaopeng
Zhao, Gang
Lu, Yan-Qing
Gong, Yan-Xiao
Xie, Zhenda
Zhu, Shi-Ning
Drone-based entanglement distribution towards mobile quantum networks
title Drone-based entanglement distribution towards mobile quantum networks
title_full Drone-based entanglement distribution towards mobile quantum networks
title_fullStr Drone-based entanglement distribution towards mobile quantum networks
title_full_unstemmed Drone-based entanglement distribution towards mobile quantum networks
title_short Drone-based entanglement distribution towards mobile quantum networks
title_sort drone-based entanglement distribution towards mobile quantum networks
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446934/
https://www.ncbi.nlm.nih.gov/pubmed/34691535
http://dx.doi.org/10.1093/nsr/nwz227
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