Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Si-Ran Zhao"'
Autor:
Shuai Zhao, Qing Zhou, Si-Ran Zhao, Xin-Yu Xu, Wen-Zhao Liu, Li Li, Nai-Le Liu, Qiang Zhang, Jing-Ling Chen, Kai Chen
Publikováno v:
Results in Physics, Vol 56, Iss , Pp 107210- (2024)
Hardy’s paradox provides an “All-versus-Nothing” fashion to directly certify that quantum mechanics cannot be completely described by local realistic theory. However, when considering potential imperfections in experiments, like noisy entanglem
Externí odkaz:
https://doaj.org/article/ff46434cd3994ecd9643a4ea9d6355f6
Autor:
Si-Ran Zhao, Yu-Zhe Zhang, Wen-Zhao Liu, Jian-Yu Guan, Weijun Zhang, Cheng-Long Li, Bing Bai, Ming-Han Li, Yang Liu, Lixing You, Jun Zhang, Jingyun Fan, Feihu Xu, Qiang Zhang, Jian-Wei Pan
Publikováno v:
Physical Review X, Vol 11, Iss 3, p 031009 (2021)
Distributed quantum sensing can provide quantum-enhanced sensitivity beyond the shot-noise limit (SNL) for sensing spatially distributed parameters. To date, distributed quantum sensing experiments have mostly been accomplished in laboratory environm
Externí odkaz:
https://doaj.org/article/ae8ee89022d84cde9bbc45e73b0b277b
Autor:
Qi Zhao, Ming-Han Li, Yanbao Zhang, Jingyun Fan, Jian-Wei Pan, Xiongfeng Ma, Si-Ran Zhao, William J. Munro, Wen-Zhao Liu, Jun Zhang, Xingjian Zhang, Yang Liu, Yuxiang Peng, Qiang Zhang, Bing Bai
Publikováno v:
Physical Review Letters. 126
Randomness expansion where one generates a longer sequence of random numbers from a short one is viable in quantum mechanics but not allowed classically. Device-independent quantum randomness expansion provides a randomness resource of the highest se
Autor:
Yu-Huai Li, Geoff J. Pryde, Zhen Wang, Barry C. Sanders, Lixing You, Qiang Zhang, Juan Miguel Arrazola, Hao Li, Kejin Wei, Si-Ran Zhao, Weijun Zhang, Feihu Xu, Yang Liu, Yu-Ao Chen, Jian-Wei Pan, Nora Tischler
Publikováno v:
14th Pacific Rim Conference on Lasers and Electro-Optics (CLEO PR 2020).
The quanhim switch is a tool that allows coherently controlling the order in which two operations are applied. We report the first experimental demonstration of the exponential advantage in communication complexity enabled by this tool.
Autor:
Jingyun Fan, Sammy Ragy, Jian-Wei Pan, Bing Bai, Wen-Zhao Liu, Ming-Han Li, Jun Zhang, Yang Liu, Qiang Zhang, Si-Ran Zhao, Peter J. Brown, Roger Colbeck
The ability to produce random numbers that are unknown to any outside party is crucial for many applications. Device-independent randomness generation does not require trusted devices and therefore provides strong guarantees of the security of the ou
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::601a7b8311048b5fae69dd5f98c688b2
Autor:
Zhen Wang, Nora Tischler, Yu-Huai Li, Geoff J. Pryde, Lixing You, Jian-Wei Pan, Weijun Zhang, Qiang Zhang, Hao Li, Kejin Wei, Yang Liu, Juan Miguel Arrazola, Yu-Ao Chen, Barry C. Sanders, Si-Ran Zhao, Feihu Xu
Finding exponential separation between quantum and classical information tasks is like striking gold in quantum information research. Such an advantage is believed to hold for quantum computing but is proven for quantum communication complexity. Rece
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::72e1e6b46f4c8ada80964722bd7cd01a
http://arxiv.org/abs/1810.10238
http://arxiv.org/abs/1810.10238
Autor:
Kejin Wei1,2, Tischler, Nora3, Si-Ran Zhao1,2, Yu-Huai Li1,2, Arrazola, Juan Miguel4,5, Yang Liu1,2, Weijun Zhang6, Hao Li6, Lixing You6, Zhen Wang6, Yu-Ao Chen1,2, Sanders, Barry C.1,7,8, Qiang Zhang1,2, Pryde, Geoff J.3, Feihu Xu1,2, Jian-Wei Pan1,2
Publikováno v:
Physical Review Letters. 3/29/2019, Vol. 122 Issue 12, p1-1. 1p.
Autor:
Ming-Han Li1,2, Xingjian Zhang3, Wen-Zhao Liu1,2, Si-Ran Zhao1,2, Bing Bai1,2, Yang Liu1,2, Qi Zhao1,2, Yuxiang Peng3, Jun Zhang1,2, Yanbao Zhang4, Munro, W. J.4, Xiongfeng Ma3 xma@tsinghua.edu.cn, Qiang Zhang1,2 qiangzh@ustc.edu.cn, Jingyun Fan1,2,5,6 fanjy@sustech.edu.cn, Jian-Wei Pan1,2 pan@ustc.edu.cn
Publikováno v:
Physical Review Letters. 2/5/2021, Vol. 126 Issue 5, p1-1. 1p.