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Entanglement-based secure quantum cryptography over 1,120 kilometres 期刊论文
NATURE, 2020
作者:  Paldi, Flora;  Alver, Bonnie;  Robertson, Daniel;  Schalbetter, Stephanie A.;  Kerr, Alastair;  Kelly, David A.;  Baxter, Jonathan;  Neale, Matthew J.;  Marston, Adele L.
收藏  |  浏览/下载:48/0  |  提交时间:2020/07/03

An efficient entanglement-based quantum key distribution is sent from the Micius satellite to two ground observatories 1,120 kilometres apart to establish secure quantum cryptography for the exchange ofquantum keys.


Quantum key distribution (QKD)(1-3)is a theoretically secure way of sharing secret keys between remote users. It has been demonstrated in a laboratory over a coiled optical fibre up to 404 kilometres long(4-7). In the field, point-to-point QKD has been achieved from a satellite to a ground station up to 1,200 kilometres away(8-10). However, real-world QKD-based cryptography targets physically separated users on the Earth, for which the maximum distance has been about 100 kilometres(11,12). The use of trusted relays can extend these distances from across a typical metropolitan area(13-16)to intercity(17)and even intercontinental distances(18). However, relays pose security risks, which can be avoided by using entanglement-based QKD, which has inherent source-independent security(19,20). Long-distance entanglement distribution can be realized using quantum repeaters(21), but the related technology is still immature for practical implementations(22). The obvious alternative for extending the range of quantum communication without compromising its security is satellite-based QKD, but so far satellite-based entanglement distribution has not been efficient(23)enough to support QKD. Here we demonstrate entanglement-based QKD between two ground stations separated by 1,120 kilometres at a finite secret-key rate of 0.12 bits per second, without the need for trusted relays. Entangled photon pairs were distributed via two bidirectional downlinks from the Micius satellite to two ground observatories in Delingha and Nanshan in China. The development of a high-efficiency telescope and follow-up optics crucially improved the link efficiency. The generated keys are secure for realistic devices, because our ground receivers were carefully designed to guarantee fair sampling and immunity to all known side channels(24,25). Our method not only increases the secure distance on the ground tenfold but also increases the practical security of QKD to an unprecedented level.


  
Experimental demonstration of memory-enhanced quantum communication 期刊论文
NATURE, 2020
作者:  Quinn, Robert A.;  Melnik, Alexey, V;  Vrbanac, Alison;  Fu, Ting;  Patras, Kathryn A.;  Christy, Mitchell P.;  Bodai, Zsolt;  Belda-Ferre, Pedro;  Tripathi, Anupriya;  Chung, Lawton K.;  Downes, Michael;  Welch, Ryan D.;  Quinn, Melissa;  Humphrey, Greg;  Panitchpakdi, Morgan;  Weldon, Kelly C.;  Aksenov, Alexander;  da Silva, Ricardo;  Avila-Pacheco, Julian;  Clish, Clary;  Bae, Sena;  Mallick, Himel;  Franzosa, Eric A.;  Lloyd-Price, Jason;  Bussell, Robert;  Thron, Taren;  Nelson, Andrew T.;  Wang, Mingxun;  Leszczynski, Eric;  Vargas, Fernando;  Gauglitz, Julia M.;  Meehan, Michael J.;  Gentry, Emily;  Arthur, Timothy D.;  Komor, Alexis C.;  Poulsen, Orit;  Boland, Brigid S.;  Chang, John T.;  Sandborn, William J.;  Lim, Meerana;  Garg, Neha;  Lumeng, Julie C.;  Xavier, Ramnik J.;  Kazmierczak, Barbara, I;  Jain, Ruchi;  Egan, Marie;  Rhee, Kyung E.;  Ferguson, David;  Raffatellu, Manuela;  Vlamakis, Hera;  Haddad, Gabriel G.;  Siegel, Dionicio;  Huttenhower, Curtis;  Mazmanian, Sarkis K.;  Evans, Ronald M.;  Nizet, Victor;  Knight, Rob;  Dorrestein, Pieter C.
收藏  |  浏览/下载:36/0  |  提交时间:2020/07/03

The ability to communicate quantum information over long distances is of central importance in quantum science and engineering(1). Although some applications of quantum communication such as secure quantum key distribution(2,3) are already being successfully deployed(4-7), their range is currently limited by photon losses and cannot be extended using straightforward measure-and-repeat strategies without compromising unconditional security(8). Alternatively, quantum repeaters(9), which utilize intermediate quantum memory nodes and error correction techniques, can extend the range of quantum channels. However, their implementation remains an outstanding challenge(10-16), requiring a combination of efficient and high-fidelity quantum memories, gate operations, and measurements. Here we use a single solid-state spin memory integrated in a nanophotonic diamond resonator(17-19) to implement asynchronous photonic Bell-state measurements, which are a key component of quantum repeaters. In a proof-of-principle experiment, we demonstrate high-fidelity operation that effectively enables quantum communication at a rate that surpasses the ideal loss-equivalent direct-transmission method while operating at megahertz clock speeds. These results represent a crucial step towards practical quantum repeaters and large-scale quantum networks(20,21).


A solid-state spin memory is used to demonstrate quantum repeater functionality, which has the potential to overcome photon losses involved in long-distance transmission of quantum information.


  
Characterising the biophysical, economic and social impacts of soil carbon sequestration as a greenhouse gas removal technology 期刊论文
GLOBAL CHANGE BIOLOGY, 2019
作者:  Sykes, Alasdair J.;  Macleod, Michael;  Eory, Vera;  Rees, Robert M.;  Payen, Florian;  Myrgiotis, Vasilis;  Williams, Mathew;  Sohi, Saran;  Hillier, Jon;  Moran, Dominic;  Manning, David A. C.;  Goglio, Pietro;  Seghetta, Michele;  Williams, Adrian;  Harris, Jim;  Dondini, Marta;  Walton, Jack;  House, Joanna;  Smith, Pete
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
4 per mille  agriculture  greenhouse gas removal  negative emissions  soil carbon sequestration  soil organic carbon  
How to measure, report and verify soil carbon change to realize the potential of soil carbon sequestration for atmospheric greenhouse gas removal 期刊论文
GLOBAL CHANGE BIOLOGY, 2019
作者:  Smith, Pete;  Soussana, Jean-Francois;  Angers, Denis;  Schipper, Louis;  Chenu, Claire;  Rasse, Daniel P.;  Batjes, Niels H.;  van Egmond, Fenny;  McNeill, Stephen;  Kuhnert, Matthias;  Arias-Navarro, Cristina;  Olesen, Jorgen E.;  Chirinda, Ngonidzashe;  Fornara, Dario;  Wollenberg, Eva;  Alvaro-Fuentes, Jorge;  Sanz-Cobena, Alberto;  Klumpp, Katja
收藏  |  浏览/下载:13/0  |  提交时间:2019/11/27
measurement  monitoring  MRV  reporting  soil organic carbon  soil organic matter  verification  
Device-independent quantum random-number generation 期刊论文
NATURE, 2018, 562 (7728) : 548-+
作者:  Liu, Yang;  Zhao, Qi;  Li, Ming-Han;  Guan, Jian-Yu;  Zhang, Yanbao;  Bai, Bing;  Zhang, Weijun;  Liu, Wen-Zhao;  Wu, Cheng;  Yuan, Xiao;  Li, Hao;  Munro, W. J.;  Wang, Zhen;  You, Lixing;  Zhang, Jun;  Ma, Xiongfeng;  Fan, Jingyun;  Zhang, Qiang;  Pan, Jian-Wei
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27
SCIENCE & SECURITY Australia targets foreign influence at universities 期刊论文
SCIENCE, 2019, 365 (6457) : 965-965
作者:  Normile, Dennis
收藏  |  浏览/下载:2/0  |  提交时间:2019/11/27
Impacts of intensifying or expanding cereal cropping in sub-Saharan Africa on greenhouse gas emissions and food security 期刊论文
GLOBAL CHANGE BIOLOGY, 2019, 25 (11) : 3720-3730
作者:  van Loon, Marloes P.;  Hijbeek, Renske;  ten Berge, Hein F. M.;  De Sy, Veronique;  ten Broeke, Guus A.;  Solomon, Dawit;  van Ittersum, Martin K.
收藏  |  浏览/下载:17/0  |  提交时间:2019/11/27
fertilizer  food self-sufficiency  intensification  land use conversion  nitrogen  nutrient use efficiency  yield gaps  
US universities confront a security storm in Congress 期刊论文
SCIENCE, 2019, 365 (6453) : 531-531
作者:  Mervis, Jeffrey
收藏  |  浏览/下载:2/0  |  提交时间:2019/11/27
Balancing science and security 期刊论文
SCIENCE, 2019, 365 (6449) : 101-101
作者:  Coleman, Mary Sue
收藏  |  浏览/下载:0/0  |  提交时间:2019/11/27
Chinese scientists and security 期刊论文
SCIENCE, 2019, 365 (6448) : 9-9
作者:  Zerhouni, Elias
收藏  |  浏览/下载:1/0  |  提交时间:2019/11/27