陈险峰,男,1968年生,上海交通大学物理与天文学院光科学与技术研究所所长,上海交通大学特聘教授。[1][2]
1999年2月,陈险峰获上海交通大学光学专业博士学位。2004年,他被聘为上海交通大学物理系教授。陈险峰从事光学前沿及其应用研究,在非线性光学、集成光电子学、光场调控、光量子信息和生物光子学等领域做出了系列研究成果,他曾在Nature、Nature Photonics、Science Advances、Physical Review Letters等物理和光学领域国际重要刊物上发表论文近500篇。[1][2]
陈险峰是国家杰出青年基金获得者,国家“万人计划”领军人才,科技部中青年科技创新领军人才,上海市优秀学术带头人和上海市曙光学者等,享受政府特殊津贴。2010年,他获得亚太物理协会联合会杨振宁奖。[1][2]
人物经历
陈险峰出生于1968年。1997至1998年,他受国际理论物理中心资助在意大利国家电磁波研究所访问研究。1999年2月,他获得上海交通大学光学专业博士学位。2002年至2003年,陈险峰作为国家公派高级访问学者在美国哈佛大学物理系工作。2004年,他被聘为上海交通大学物理系教授。[1][2]
陈险峰曾获得国家杰出青年基金。此外,其还享受政府特殊津贴。他还曾主持国家自然科学基金重大、重点、科技部重大专项、上海市重大项目等项目。陈险峰现任上海交通大学物理与天文学院光科学与技术研究所所长。[1][2]
社会任职
陈险峰是国家′′光电子专业组成员,中国光学学会基础光学委员会副主任、Journal of Nonlinear Optical Physics & Materials主编。[1][2]
研究方向
陈险峰从事光学前沿及其应用研究,在非线性光学、集成光电子学、光场调控、光量子信息和生物光子学等领域做出了系列研究成果。[1][2]
学术成果
陈险峰曾在Nature、Nature Photonics、Science Advances、Physical Review Letters等物理和光学领域国际重要刊物上发表论文近500篇。他培养的几十名博士和硕士毕业生活跃在高等教育、国防、高新技术、自主创业等各个领域。[1][2]
陈险峰主要学术成就包括率先观测到由电光效应而引起的激光偏振耦合现象,建立了利用电场对激光参数的精密调控新方法;系统开展了无序和多维畴反转铁电晶体材料性能研究,拓展了准相位匹配研究和应用范畴;在畴反转铁电晶体新型光电子器件方面取得关键突破,为国家重大需求提供技术基础等。[3]
2025年5月,陈险峰团队联合上海电力大学李渊华教授团队,在量子直接通信领域取得重要进展,成功构建了一个四个节点间300公里级的全连接量子直接通信[注1]网络。相关研究成果发表于《科学通报》杂志。[4]
| 代表性论文著作 |
|---|
| Yuting Zhang, Hao Li, Tingting Ding, Yiwen Huang, Longyue Liang, Xuerui Sun, Yongzhi Tang, Jiayu Wang, Shijie Liu, Yuanlin Zheng, and Xianfeng Chen, Scalable, fiber-compatible lithium niobate-on-insulator microwaveguides for efficient nonlinear photonics, Optica, 10(6), 688-693 (2023) |
| Guangzhen Li, Luojia Wang, Rui Ye, Yuanlin Zheng, Da-Wei Wang, Xiong-Jun Liu, Avik Dutt, and Luqi Yuan, and Xianfeng Chen, Direct Extraction of Topological Zak Phase with the Synthetic Dimension, Light: Science & Applications, 12, 81 (2023) |
| Danying Yu, Guangzhen Li, Luojia Wang, Daniel Leykam, Luqi Yuan, and Xianfeng Chen, Moire Lattice in One-Dimensional Synthetic Frequency Dimension, Physical Review Letters, 130, 143801 (2023) |
| Tianju Zhang, Chaocheng Zhou, Ningning Dong, Xianfeng Chen, Xuezhen Feng, Hong Chen, Long Zhang, Jia Lin and Jun Wang, Regulation of the Luminescence Mechanism of Two-Dimensional Tin Halide Perovskites, Nature Communications, 13:60 (2022) |
| Yao Chen, Fangxing Zhang, Tian Qin, Guolin Zhao, Jiankun Hou, Xianfeng Chen, Li Ge, and Wenjie Wan, Exceptional points with memory in a microcavity Brillouin laser, Optica, 9(9), 971-979 (2022) |
| Zhantong Qi, Yuanhua Li, Yiwen Huang, Juan Feng, Yuanlin Zheng, and Xianfeng Chen, A 15-user quantum secure direct communication network, Light: Science & Applications, 10, 183 (2021) |
| Danying Yu, Bo Peng, Xianfeng Chen, and Xiong-Jun Liu, Luqi Yuan, Topological holographic quench dynamics in a synthetic frequency dimension, Light: Science & Applications, 10, 209 (2021) |
| Jianfan Yang, Luqi Yuan, Tian Qin, Fangxing Zhang, Yao Chen, Xiaoshun Jiang, Xianfeng Chen, Shanhui Fan, and Wenjie Wan, Phonon-induced anomalous gauge potential for photonic isolation in frequency space, Optica, 8(11), 1448-1457 (2021) |
| Guangzhen Li, Yuanlin Zheng, Avik Dutt, Danying Yu, Qingrou Shan, Shijie Liu, Luqi Yuan, Shanhui Fan, and Xianfeng Chen, Dynamic band structure measurement in the synthetic space, Science Advances, 7, eabe4335 (2021) |
| Hailang Dai, Luqi Yuan, Cheng Yin, Zhuangqi Cao, and Xianfeng Chen, Direct Visualizing the Spin Hall Effect of Light via Ultrahigh-Order Modes, Physical Review Letters, 124, 053902 (2020) |
| Fangxing Zhang, Yaming Feng, Xianfeng Chen, Li Ge, and Wenjie Wan, Synthetic Anti-PT Symmetry in a Single Microcavity, Physical Review Letters, 124, 053901 (2020) |
| Peng Wang, Yuanlin Zheng, Xianfeng Chen, Changming Huang, Yaroslav V. Kartashov, Lluis Torner, Vladimir V. Konotop, and Fangwei Ye, Localization and delocalization of light in photonic moiré lattices, Nature, 577, 42–46 (2020) |
| Luqi Yuan, Qian Lin, Anwei Zhang, Meng Xiao, Xianfeng Chen, and Shanhui Fan, Photonic gauge potential in one cavity with synthetic frequency and orbital angular momentum dimensions, Physical Review Letters, 122, 083903 (2019) |
| Yuanlin Zheng, Zhiwei Fang, Shijie Liu, Ya Cheng, and Xianfeng Chen, High-Q exterior whispering-gallery modes in a double-layer crystalline microdisk resonator, Physics Review Letters, 122, 253902 (2019) |
| Qi-Chao Sun, Yang-Fan Jiang, Bing Bai, Weijun Zhang, Hao Li, Xiao Jiang, Jun Zhang, Lixing You, Xianfeng Chen, Zhen Wang, Qiang Zhang, Jingyun Fan, and Jian-Wei Pan, Experimental demonstration of non-bilocality with truly independent sources and strict locality constraints, Nature Photonics, 13, 687–691 (2019) |
| Zhanwei Liu, Shuo Yan, Haigang Liu, and Xianfeng Chen, Superhigh-Resolution Recognition of Optical Vortex Modes Assisted by a Deep-Learning Method, Physical Review Letters, 123, 183902 (2019) |
| Weifeng Zhang, Xianfeng Chen, Yaroslav V. Kartashov, Vladimir V. Konotop, and Fangwei Ye, Coupling of Edge States and Topological Bragg Solitons, Physical Review Letters, 123, 254103 (2019) |
| Yuanhua Li, Yiwen Huang, Tong Xiang, Yiyou Nie, Minghuang Sang, Luqi Yuan, and Xianfeng Chen, Multiuser Time-Energy Entanglement Swapping Based on Dense Wavelength Division Multiplexed and Sum-Frequency Generation, Physical Review Letters, 123, 250505 (2019) |
| B. B. Zhou, X. Liu, H. R. Guo, X. L. Zeng, X. F. Chen, H. P. Chung, Y. H. Chen and M. Bache, Parametrically Tunable Soliton-Induced Resonant Radiation by Three -Wave Mixing, Physics Review Letters, 118, 143901 (2017) |
| Yuanlin Zheng, Jianfan Yang, Zhenhua Shen, Jianjun Cao, Xianfeng Chen, Xiaogan Liang and Wenjie Wan, Optically induced transparency in a micro-cavity, Light: Science & Applications, 5, e16072 (2016) |
| Qi-Chao Sun, Ya-Li Mao, Si-Jing Chen, Wei Zhang, Yang-Fan Jiang, Yan-Bao Zhang, Wei-Jun Zhang, Shigehito Miki, Taro Yamashita, Hirotaka Terai, Xiao Jiang, Teng-Yun Chen, Li-Xing You, Xian-Feng Chen, Zhen Wang, Jing-Yun Fa, Qiang Zhang and Jian-Wei Pan, Quantum teleportation with independent sources and prior entanglement distribution over a network, Nature Photonics, 10(10), 671-675 (2016) |
| Jianjun Cao, Yuanlin Zheng, Yaming Feng, Xianfeng Chen, and Wenjie Wan, Metal-Free Flat Lens Using Negative Refraction by Nonlinear Four-Wave Mixing, Physical Review Letters, 217401 (2014) |
| Huaijin Ren, Xuewei Deng, Yuanlin Zheng, Ning An and Xianfeng Chen, Nonlinear Cherenkov radiation in anomalous dispersive medium, Physical Review Letters, 108, 223901 (2012) |
| 参考资料[1] |
所获荣誉
参考资料[1][2]
参考资料 4
- 陈险峰 教授 — 上海交通大学物理与天文学院
- 教师 — 上海交通大学先进光子学材料和物理实验室
- 【专题报道】物理系两位教授喜获2011年度国家杰出青年科学基金资助 — 上海交通大学物理与天文学院
- 新突破,300公里级,量子直接通信网成功构建 — 证券时报-百家号
注释
- 量子直接通信是一种利用量子力学原理进行信息传输的技术,具有极高的安全性。量子直接通信理论体系最早由清华大学龙桂鲁教授团队在2000年提出,随后国内多家科研机构相继开展研究。