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吴典

青年研究员

精密光谱科学与技术国家重点实验室      

个人资料

  • 部门: 精密光谱科学与技术国家重点实验室
  • 毕业院校: 中国科学技术大学
  • 学位: 博士
  • 学历:
  • 邮编: 200241
  • 联系电话:
  • 传真:
  • 电子邮箱: dwu@lps.ecnu.edu.cn
  • 办公地址: 上海市闵行区东川路500号光学大楼B201
  • 通讯地址: 上海

教育经历

2007-09 ~ 2011-06          合肥工业大学     应用物理专业(本科)

2016-02 ~ 2017-08          牛津大学       (访问)(博士)

2011-09 ~ 2018-06          中国科学技术大学   原子分子物理专业(博士)


工作经历

2018-06 ~ 2022-05  中国科学技术大学   博士后

2022-06 ~ 2023-11  中国科学技术大学   副研究员

2023-12 ~ 至今   华东师范大学     青年研究员

个人简介

吴典,青年研究员,紫江青年学者,主要从事基于多光子纠缠的基础物理检验和光量子信息实验研究。近年来,已在包括 Nature(1 篇)、Science(1 篇)、Nature Nanotechnology(1 篇)、PNAS(1  篇)、PRL(12 篇)等国际学术期刊发表论文20余篇,共被引用4900余次(GoogleCitation),以第一作者(含共同一作)发表的研究论文包括 Phys. Rev.  Lett. 5 篇、Phys. Rev. Research. 1 篇。上述研究工作在 2015 年被英国物理学会(IOP)PhysicsWorld 评为年度突破,在2021年和2022年被美国物理学会(APS)评选为年度物理学十大进展。

招生信息:欢迎对量子物理,量子信息研究感兴趣的本科生、研究生和具备光量子物理理论和实验研究背景的博士后咨询报名吴健团队吴典研究员课题组。


社会兼职

研究方向

光量子信息: 1.基础物理检验  2.光量子信息:包含量子计算、量子精密测量、量子通信等


招生与培养

硕士研究生&博士研究生


课题组每年计划招收硕士研究生1-2名,博士研究生1名。要求:

1、对量子信息和量子物理具有浓厚的兴趣,且具有比较强的实验动手能力;

2、具有良好的英语表达、写作水平。



博士后


课题组长期招聘博士后,要求博士阶段需要具有以下背景之一

1、非线性光学、微纳光学、量子光学实验方面。

2、可以与量子光学实验紧密结合的量子信息理论与量子光学理论方面。


有意者请将简历发送dwu@lps.ecnu.edu.cn


开授课程

科研项目

学术成果

代表作文:

 1.      Dian Wu, Li-Chao Peng, Xue-Mei Gu, Han-Sen Zhong, Jia-Min Xu, Ming-Cheng Chen, Li Li, Niu-Le Liu, Chao-Yang Lu, Jian-Wei Pan, High-efficiency heralded entanglement and quantum teleportation advantage, in preparation (2022).

 2.      Dian Wu, Yang-Fan Jiang, Xue-Mei Gu, Liang Huang, Bing Bai, Qi-Chao Sun, Xingjian Zhang, Si-Qiu Gong, Yingqiu Mao, Han-Sen Zhong, Ming-Cheng Chen, Jun Zhang, Qiang Zhang, Chao-Yang Lu, and Jian-Wei Pan, Experimental Refutation of Real-Valued Quantum Mechanics under Strict Locality Conditions, Phys. Rev. Lett. 129, 140401 (2022).

 3.      Dian Wu, Qi Zhao, Can Wang, Liang Huang, Yang-Fan Jiang, Bing Bai, You Zhou, Xue-Mei Gu, Feng-Ming Liu, Ying-Qiu Mao, Qi-Chao Sun, Ming-Cheng Chen, Jun Zhang, Cheng-Zhi Peng, Xiao-Bo Zhu, Qiang Zhang, Chao-Yang Lu, Jian-Wei Pan, Closing thelocality and detection loopholes in multiparticle entanglement self-testing, Phys. Rev. Lett. 128,250401 (2022).

 4.      Dian Wu, Qi Zhao, Xue-Mei Gu, Han-Sen Zhong, You Zhou, Li-Chao Peng, Jian Qin, Yi-Han Luo, Kai Chen, Li Li, Nai-Le Liu, Chao-Yang Lu, Jian-Wei Pan, Robust self-testing of multiparticle entanglement, Phys. Rev. Lett. 127, 230503 (2021).

 5.      Dian Wu, Qi Zhao, Yi-Han Luo,Han-Sen Zhong, Li-Chao Peng, Kai Chen, Peng Xue, Li Li, Nai-Le Liu, Chao-Yang Lu, and Jian-Wei Pan, Entanglement-free witnessing of quantum incompatibility in a high-dimensional system, Phys. Rev. Research 3, 023017 (2021).

 6.      Li-Chao Peng, Dian Wu(co-first author), Han-Sen Zhong, Yi-Han Luo, Yuan Li, Yi Hu, Xiao Jiang, Ming-Cheng Chen, Li Li, Nai-Le Liu, Kae Nemoto, William J. Munro, Barry C. Sanders, Chao-Yang Lu, and Jian-Wei Pan, Cloning of Quantum Entanglement, Phys. Rev. Lett. 125, 210502 (2020).

 7.      Ming-Cheng Chen, Dian Wu(co-first author), Zu-En Su, Xin-Dong Cai, Xi-Lin Wang, Tao Yang, Li Li, Nai-Le Liu, Chao-Yang Lu, Jan-Wei Pan, Efficient measurement of entanglement monotones on embedding quantum simulators, Phys. Rev. Lett. 116, 070502 (2016).

 

共同作者文:

1.      Xue-Mei Gu, Liang Huang, Alejandro Pozas-Kerstjens, Yang-Fan Jiang, Dian Wu, Bing Bai, Qi-Chao Sun, Ming-Cheng Chen, Jun Zhang, Sixia Yu, Qiang Zhang, Chao-Yang Lu, Jian-Wei Pan,Experimental full network nonlocality with independent sources and strict locality constraints, Phys. Rev. Lett. 130, 190201 (2023).

2.     Jian Qin, Yu-Hao Deng, Han-Sen Zhong, Li-Chao Peng, Hao Su, Yi-Han Luo, Jia-Min Xu, Dian Wu, Si-QiGong, Hua-Liang Liu, Hui Wang, Ming-Cheng Chen, Li Li, Nai-Le Liu, Chao-Yang Lu, and Jian-Wei Pan, Unconditional and Robust Quantum Metrological Advantage beyond N00N States, Phys. Rev. Lett. 130, 070801 (2023).

3.     Liang Huang, Xue-Mei Gu, Yang-Fan Jiang, Dian Wu, Bing Bai, Ming-Cheng Chen, Qi-Chao Sun, Jun Zhang, Sixia Yu, Qiang Zhang, Chao-Yang Lu, Jian-Wei Pan, Nature's nonlocality must be boundlessly multipartite: an experimental demonstration under strict locality condition, Phys. Rev. Lett. 129, 060401 (2022).

4.     Han-Sen Zhong, Yu-Hao Deng, Jian Qin, Hui Wang, Ming-Cheng Chen, Li-Chao Peng, Yi-Han Luo, Dian Wu, Si-Qiu Gong, Hao Su, Yi Hu, Peng Hu, Xiao-Yan Yang, Wei-Jun Zhang, Hao Li, Yuxuan Li, Xiao Jiang, Lin Gan,Guangwen Yang, Lixing You, Zhen Wang, Li Li, Nai-Le Liu, Jelmer J Renema, Chao-Yang Lu, Jian-Wei Pan, Phase-programmable gaussian boson sampling using stimulated squeezed light, Phys. Rev. Lett. 127, 180502 (2021).

5.     Yi-Han Luo, Ming-Cheng Chen, Manuel Erhard, Han-Sen Zhong, Dian Wu, Hao-Yang Tang, Qi Zhao, Xi-Lin Wang, Keisuke Fujii, Li Li, Nai-Le Liu, Kae Nemoto, William J Munro, Chao-Yang Lu, Anton Zeilinger, Jian-Wei Pan, Quantum teleportation of physical qubits into logical code spaces, PNAS. 118, 36 (2021).

6.    Ming-Cheng Chen, Yuan Li, Run-Ze Liu,Dian Wu, Zu-En Su, Xi-Lin Wang, Li Li, Nai-Le Liu, Chao-Yang Lu, and Jian-Wei Pan, Directly Measuring a Multiparticle Quantum Wave Function via Quantum Teleportation, Phys. Rev. Lett. 127, 030402 (2021).

7.    Jin-Peng Li, Xuemei Gu, Jian Qin, Dian Wu, Xiang You, Hui Wang, Christian Schneider, Sven Hfling, Yong-Heng Huo, Chao-Yang Lu, Nai-Le Liu, Li Li, Jian-Wei Pan, Heralded nondestructive quantum entangling gate with single-photon sources, Phys. Rev. Lett. 126, 140501 (2021).

8.    Han-Sen Zhong, Hui Wang, Yu-Hao Deng, Ming-Cheng Chen, Li-Chao Peng, Yi-Han Luo, Jian Qin, Dian Wu, Xing Ding, Yi Hu, Peng Hu, Xiao-Yan Yang, Wei-Jun Zhang, Hao Li, Yuxuan Li, Xiao Jiang, Lin Gan, Guangwen Yang, Lixing You, Zhen Wang, Li Li, Nai-Le Liu, Chao-Yang Lu, Jian-Wei Pan, Quantum computational advantage using photons, Science. 370(6523), 1460-1463 (2020).

9.    Han-Sen Zhong, Li-Chao Peng, Yuan Li, Yi Hu, Wei Li, Jian Qin, Dian Wu, Wei-jun Zhang, Hao Li, Lu Zhang, Zhen Wang, Lixing You, Xiao Jiang, Li Li, Nai-Le Liu, Jonathan P Dowling, Chao-Yang Lu, Jian-Wei Pan, Experimental Gaussian boson sampling, Science Bulletin. 64, 8 511-515 (2019).

10.   Ming-Cheng Chen, Han-Sen Zhong, Yuan Li, Dian Wu, Xi-Lin Wang, Li Li, Nai-Le Liu, Chao-Yang Lu, Jian-Wei Pan, Emergence of Classical Objectivity of Quantum Darwinism in a Photonic Quantum Simulator, Science Bulletin 64, 19 580-585 (2019).

11.   Zu-En Su, Wei-Dong Tang, Dian Wu, Xin-Dong Cai, Tao Yang, Li Li, Nai-Le Liu, Chao-Yang Lu, Marek Zukowski, Jian-Wei Pan, Experimental test of the irreducible four-qubit Greenberger-Horne-Zeilinger paradox, Phys. Rev. A 95, 030103 (2017).

12.   Xi-Lin Wang, Luo-Kan Chen, Wei Li, He-Liang Huang, Chang Liu, Chao Chen, Yi-Han Luo, Zu-En Su, Dian Wu, Zheng-Da Li, He Lu, Yi Hu, Xiao Jiang, Cheng-Zhi Peng, Li Li, Nai-Le Liu, Yu-Ao Chen, Chao-Yang Lu and Jian-Wei Pan, Experimental ten-photon entanglement, Phys. Rev. Lett. 117 (21), 210502 (2016).

13.   Xi-Ling Wang, Xin-Dong Cai, Zu-En Su, Ming-Cheng Chen, Dian Wu, Li Li, Nai-Le Liu, Chao-Yang Lu and Jian-Wei Pan, Quantum teleportation of multiple properties of a single quantum particle, Nature. 418, 416-419 (2015).

14.   Xin-Dong Cai, Dian Wu, Zu-En Su, Ming-Cheng Chen, X.-L. Wang, Li Li, Niu-Le Liu, Chao-Yang Lu and Jian-Wei Pan, Entanglement-Based Machine Learning on a Quantum Computer, Phys. Rev. Lett. 114, 110504 (2015).

15.   Yu-Jia Wei, Yu-Ming He, Ming-Cheng Chen, Yu He, Dian Wu, C. Schneider, M. Kamp, S. Hfling, Chao-Yang Lu and Jian-Wei Pan, Deterministic and robust generation of single photons on a chip with 99.5% indistinguishability using adiabatic rapid passage, Nano.Lett. 14, 6515-6519(2014).

16.   Yu-Ming He, Yu He,Yu-Jia Wei, Dian Wu, M. Atatüre, C. Schneider, S. Hfling, M. Kamp, Chao-Yang Lu and Jian-Wei Pan, On-demand semiconductor single-photon source with near-unity indistinguishability, Nat. Nanotech 8, 213-217 (2013).

 

 

 


荣誉及奖励

2015 多自由度量子隐形传态实验实现入选两院院士评选的中国科技十大进展新闻

2015 多自由度量子隐形传态实验实现被英国物理学会(IOPPhysics World 评为年度突破

2016 量子信息与量子科技前沿协同创新中心 研究部个人一等奖

2020 “九章量子优越性实验实现入选两院院士评选的中国科技十大进展新闻

2021 “九章量子优越性实验实现入选联合国教科文组织10项极具突破性的数字创新技术

2021 “九章量子优越性实验实现在Falling Walls科学峰会上被评为2021年度十大科学突破

2021 “九章量子优越性实验实现被美国物理学会(APS Physics 评为物理学十大进展

2021 “九章量子优越性实验实现被英国物理学会(IOPPhysics World 评为年度量子科技亮点

2022 量子实数检验实验实现被美国物理学会(APS Physics 评为物理学十大进展


11 访问

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