黄鹏副研究员
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硕博导师:博士生导师
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课题组网页:https://qsip.sjtu.edu.cn
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邮箱:huang.peng@sjtu.edu.cn
研究方向
- 量子保密通信,量子信息理论,线性光量子计算
工作经历
- 2013-2015,上海交通大学,电子信息与电气工程学院,博士后
- 2015-2017,上海交通大学,电子信息与电气工程学院,助理研究员
- 2017至今,上海交通大学,电子信息与电气工程学院,副研究员
教育经历
- 2002-2006,南昌大学,通信工程,工学学士
- 2006-2009,南昌大学,信号与信息处理,工学硕士
- 2007-2009,海交通大学,信号与信息处理,硕士访学
- 2009-2013,上海交通大学,通信与信息系统,工学博士
荣誉
- 2016年:湖南省自然科学二等奖(排名第5)
- 2016年:上海交通大学晨星计划(C类)
- 2016年:上海交通大学教职工考核优秀
- 2020年:上海交通大学教职工考核优秀
- 2021年:电院优秀共产党员
- 2022年:湖南省自然科学二等奖(排名第3)
研究成果
- 首创性地提出了基于非高斯操作及基编码连续变量量子密钥(CVQKD)理论方案,国际上首次实验实现了超百公里单模光纤安全传输距离CVQKD,并创造了25km标准单模光纤下随传本振高斯调制相干态CVQKD方案1Mbps国际最高安全密钥率纪录及本地本振类高斯调制相干态CVQKD 3.14Mbps当时国际最高记录;
- 系统研究了CVQKD系统实际安全性理论及技术,首次提出区分攻击、激光注入攻击、衰减器攻击等系列攻击方案,并提出了基于机器学习、异步查找通信等系列高效安全防御方案,构建了可防御几乎所有针对现有实际安全漏洞的CVQKD安全系统;
- 构建了国际上首套高速CVQKD高速原型系统,其主频达到25MHz,50km标准单模光纤下最终平均成码率52kbps,为有报道的国际上最高速率CVQKD实验原型系统,并利用连接上海交大四个校区的实际光网络在国际上首次实现了基于实地网络的CVQKD;
- 首次全面研究了大气效应对CVQKD的影响,从理论和实验上共同验证了自由空间CVQKD对背景光的强抗干扰能力,并开创性地提出了针对自由空间CVQKD的系列过噪声抑制及参数评估方法,为自由空间CVQKD外场实现及应用奠定了技术基础。
学术兼职
- SCI权威期刊Symmetry主题编辑,Mathematics期刊客座编辑;
- 国际电联(ITU)量子信息焦点组FG-QIT4N担任WG2组量子密钥分发网络协议共同编辑;
- Phys. Rev. Lett., Optica, Opt. Lett., Opt. Express, Sci. Reports, Phys. Rev. Applied, Phys. Rev. A, J. Lightwave Technol.等期刊审稿人。
项目情况
2021-2026, 连续变量光纤量子通信接入关键技术研究, 科技创新2030国家重大专项,参与
2019-2026,连续变量量子接入网关键技术研究,上海市重大专项,子课题负责人
2020-2023,高性能本地本振连续变量量子密钥分发技术研究,国家自然科学面上项目,主持
2020-2023,空地一体化连续变量量子保密通信示范网络,广东省重点领域研发计划,参与
2017-2021,基于多参量量子探测的光学关联成像理论与实验研究,国家自然科学基金重点,参与
2016-2021,高性能测量设备无关量子通信协议的构造和验证,国家重点研发计划项目,参与
2017-2020,自由空间连续变量量子密钥分发理论与实验研究,国家自然科学面上项目,主持
代表论文
T. Wang,P. Huang*,S. Wang,G. Zeng,Carrier-phase estimation for simultaneous quantum key distribution and classical communication using a real local oscillator,Physical Review A,99,022318,2019.
S. Wang,P. Huang,T. Wang,G. Zeng*,Feasibility of All-Day Quantum Communication with Coherent Detection,Physical Review Applied,12: 024041,2019.
Geng Chai,Peng Huang*,Zhengwen Cao,Guihua Zeng,Suppressing excess noise for atmospheric continuous-variable quantum key distribution via adaptive optics approach,New Journal of Physics,22: 103009,2020.
Y. Zheng,P. Huang*,A. Huang,et al.,Practical security of continuous-variable quantum key distribution with reduced optical attenuation,Physical Review A,100,012313,2019.
Shiyu Wang,Peng Huang*,Tao Wang,Guihua Zeng,Atmospheric effects on continuous-variable quantum key distribution,New Journal of Physics,20: 083037,2018.
Tao Wang,Peng Huang*,Yingming Zhou,et al,High key rate continuous-variable quantum key distribution with a real local oscillator,Optics Express,26,2794,2018.
Duan Huang,Peng Huang,Dakai Lin,Chao Wang,and Guihua Zeng*,High-speed continuous-variable quantum key distribution without sending a local oscillator,Opt. Lett. 40,3695-3698,2015.
Duan Huang,Peng Huang,Huasheng Li,Tao Wang,Yingming Zhou,Guihua Zeng*,Field demonstration of a continuous-variable quantum key distribution network. Optics Letters,41(15): 3511,2016.
Duan Huang,Peng Huang*,Dakai Lin,and Guihua Zeng,Long-distance continuous-variable quantum key distribution by controlling excess noise,Scientific Reports,6:19201,2016.
Chao Wang,Duan Huang,Peng Huang*,Dakai Lin,Jinye Peng and Guihua Zeng,25 MHz clock continuous-variable quantum key distribution system over 50 km fiber channel,Scientific Reports 5,14607,2015.
Duan Huang,Dakai Lin,Chao Wang,Weiqi Liu,Shuanghong Fang,Jinye Peng,Peng Huang*,and Guihua Zeng,Continuous-variable quantum key distribution with 1 Mbps secure key rate,Opt. Express 23,017511,2015.
Peng Huang*,Guihua Zeng*,Entanglement transmission through dense scattering medium,New Journal of Physics,22: 053021,2020.
W. Liu#,P. Huang# (共同一作),J. Peng,J. Fan and G. Zeng*,Integrating machine learning to achieve an automatic parameter prediction for practical continuous-variable quantum key distribution,Physical Review A,97,022316,2018.
Peng Huang*,Jingzheng Huang,Zheshen Zhang,Guihua Zeng*,Quantum key distribution using basis encoding of Gaussian-modulated coherent states,Physical Review A,97,042311,2018.
Peng Huang*,Jingzheng Huang,Tao Wang,Huasheng Li,Duan Huang,Guihua Zeng*,Robust continuous-variable quantum key distribution against practical attacks. Physical Review A,95(5):052302,2017.
Peng Huang*,Jian Fang and Guihua Zeng,State-discrimination attack on discretely modulated continuous-variable quantum key distribution,Physical Review A,89: 042330,2014.
Peng Huang,Guangqiang He,Jian Fang,and Guihua Zeng,Performance improvement of continuous-variable quantum key distribution via photon substraction,Physical Review A,87:012317,2013.
F. Ji#, P. Huang#*, et al, Gbps key rate passive-state-preparation continuous-variable quantum key distribution within an access-network area, Photon. Res., 12: 1485, 2024.
T. Wang#*, P. Huang#, et al, High key rate continuous-variable quantum key distribution using telecom optical components, New J. Phys. 26: 023002, 2024.
L. Li, T. Wang*, X. Li, P. Huang, Y. Guo, L. Lu*, L. Zhou, G. Zeng*, Continuous-variable quantum key distribution with on-chip light sources, Photonics Research, 11: 504, 2023
Q. Song#, H. Li#*, J. Huang, P. Huang, X. Tan, Y. Tao, C. Shi, G. Zeng*, Weak signal extraction in non-stationary channel with weak measurement, Communication Phys., 6:370, 2023
S. Wei, P. Huang*, S. Wang, T. Wang, G. Zeng, High-precision data acquisition for free-space continuous-variable quantum key distribution, Optics Express, 31: 7383, 2023
M. Zhang, P. Huang*, P. Wang, S. Wei, G. Zeng, Experimental free-space continuous-variable quantum key distribution with thermal source, Optics Letters, 48: 1184, 2023
Peng Huang*, Tao Wang, Rui Chen, et al, Experimental continuous-variable quantum key distribution using a thermal source. New Journal of Physics, 23: 113028, 2021