武愕,女,1979年10月生,汉族,华东师范大学博士,民进会员。
人物经历
教育背景
1998年-2001年, 华东师范大学,物理系,本科/工科学士
2001年-2004年, 华东师范大学,物理系,研究生/理科硕士
2004年-2007年, 华东师范大学,精密光谱科学与技术国家重点实验室法国加香高等师范(Ecole Normale Superieure de Cachan)联合培养研究生/理学博士
工作经历
2008年-2013年 华东师范大学,精密光谱科学与技术国家重点实验室,副教授
2013年-2021年 华东师范大学,精密光谱科学与技术国家重点实验室,研究员
2021年-至今 华东师范大学,精密光谱科学与技术国家重点实验室,教授
历任华东师范大学精密光谱科学与技术国家重点实验室副教授、副主任、研究员,华东师范大学物理与材料科学学院副院长等职。
2018年5月任华东师范大学-阿尔伯塔大学先进科学与技术联合研究院执行院长。
社会任职
上海市科创启明星协会理事
中国科协第十次全国代表大会代表
民进华东师范大学委员会委员
第十五届上海市妇女联合会执行委员会委员
民进第十四届中央委员会青年工作委员会委员
研究方向
发展了近红外单光子频率上转换探测新方法,实现了高性能的近红外单光子探测,被评价“经过几年的发展,单光子频率上转换探测达到接近完全量子转换效率”;解决了中红外波段单光子探测与成像等极具挑战性的国际难题,突破光子探测仅仅工作在2μm以下而中远红外波段一直无法达到光子探测的技术瓶颈,被国际同行引用评价为 “高效的单光子探测技术已拓展至中红外波段”,“室温下的中红外单光子频率上转换探测是可替代低温中红外探测和成像的具有吸引力的方法”;结合飞秒激光微纳加工技术,在局域的飞秒激光辐照下制备 NV色心,构成单光子源,被认为是“制备NV色心的有效途径”;实现了窄线宽高亮度室温单光子源,被评价为“所发展的基于NE8色心的单光子源是有望应用于地对星量子保密通信实用化单光子源”。
开授课程
《光学》(本科)、《非线性光学》(研究生)
主要成就
在单光子产生、单光子干涉、单光子频率转换及其应用等方面取得了多项研究成果,至今发表SCI论文100余篇,他引共1800余次。特别是在基于金刚石中色心的单光子产生和单光子干涉等研究方面获得重要进展,在Science上合作发表论文,被评论为 “有可能成为一项里程碑性的工作”。
所获荣誉
曾获
饶毓泰基础光学奖优秀奖、全国青少年科技创新奖、上海市青少年科技创新市长奖、上海市研究生优秀成果奖(博士学位论文)、上海市技术发明奖二等奖(第四完成人)等。并获得上海市新长征突击手、上海市三八红旗手、上海市教卫系统三八红旗手等荣誉称号。
代表论文
Selected Publications (Impact index>3.0, from 2011)
1.Preparations and applications of single color centers in the diamond,Zhiping Ju , Junjie Lin , Si Shen , Botao Wu and E Wu*, Advances in Physics X 6, 1858721(2021).
2.Quantum calibration of multi-pixel photon counter and its application in high-sensitivity magnetometry with NV center ensemble, Y. Chen, P. Balasubramanian, Y. Cai, Y. Rong, Y. Liu, F. Jelezko, C. Ding, X. Chen, and E Wu*, IEEE J.Sel.Top.Quantum Electron. 26, 3800307(2020).
3.Efficient generation of nitrogen vacancy centers by laser writing close to the diamond surface with a layer of silicon nanoballs, Youying Rong, Zhiping Ju, Qiang Ma, Shikang Liu, Chengda Pan, Botao Wu, Si Shen and E Wu*, New J. Phys. 22, 13006(2020).
4.Bright near-surface silicon vacancy centers in diamond fabricated by femtosecond laser ablation,Youying Rong, Ke Cheng, Zhiping Ju, Chengda Pan, Qiang Ma, Shikang Liu, Si Shen, Botao Wu, Tianqing Jia, E Wu*, and Heping Zeng,Opt. Lett. 44,3793(2019).
5.Selective polarization modification of upconversion luminescence of NaYF4:Yb3+,Er3+ nanoparticles by plasmonic nanoantenna arrays,Lingxiao Chen, Youying Rong, Mengxin Ren, Wei Wu, Mengyao Qin, Chengda Pan, Qiang Ma, Shikang Liu, Botao Wu*, E Wu*, Jingjun Xu, and Heping Zeng,J. Phys. Chem.C 122, 15666 (2018).
6.Temporal and spatial multiplexedinfrared single-photon counterbased on high-speed avalanche photodiode, Xiuliang Chen, Chengjie Ding, Haifeng Pan, Kun Huang, Julien Laurat, Guang Wu, and E Wu*, Sci. Rep.7, 44600(2017).
7.Quantum detector tomography of a singlephoton frequency upconversion detection system,Jianhui Ma, Xiuliang Chen Huiqin Hu, Haifeng Pan, E Wu*, Heping Zeng, Opt. Express 24, 272685(2016).
8.High efficiency frequency upconversion of photons carrying orbital angular momentum for a quantum information interface, Ruikai Tang, Xiongjie Li, Wenjie Wu, Haifeng Pan, Heping Zeng and E Wu*, Opt. Express 23,9796 (2015).
9.Tip-enhanced second harmonic generation from a single NaNbO3 nanocrystal, Gengxu Chen, E Wu*, Chengjie Ding, Quanlan Xiao, Xueting Ci, Yan Liu, Youying Rong, Botao Wu,Jianrong Qiu, and Heping Zeng, IEEE J.Sel. Top. Qunatum Electron. 21, 4600605, (2015).
10.Fluorescence polarization switching from a single silicon vacancy colour centre in diamond, Yan Liu, Gengxu Chen, Youying Rong, Liam Paul McGuinness, Fedor Jelezko,Syuto Tamura, Takashi Tanii, Tokuyuki Teraji, Shinobu Onoda, Takeshi Ohshima, Junichi Isoya, Takahiro Shinada, E Wu* and Heping Zeng*, Sci. Rep. 5, 12244 (2015).
11.Tip-enhanced upconversion luminescence in Yb3+−Er3+ codoped NaYF4 nanocrystals,Gengxu Chen, Chengjie Ding, E Wu*, Botao Wu, Ping Chen, Xueting Ci, Yan Liu, Jianrong Qiu,Heping Zeng*, J.Phys. Chem. C 119,22604 (2015).
12. Quantum witness of high-speed low-noise single-photon detection, Lin Zhao, Kun Huang, Yan Liang, Jie Chen, Xueshun Shi, E Wu*, and Heping Zeng*, Opt. Express 23, 31857 (2015).
13. Investigation of the silicon vacancy color center for quantum key distribution, Y. Liu, P. Siyushev, Y. Rong, B. Wu, L. P. McGuinness, F. Jelezko, S. Tamura, T. Tanii, T. Teraji, S. Onoda, T. Ohshima, J. Isoya, T. Shinada, H. Zeng, and E Wu*,Opt. Express 23, 32961 (2015).
14.Gold nanoparticle surface deposition induced quantum efficiency enhancement for Si-multipixel photon counters, Xiaomeng Wang,Min Song,Yan Liang, Zhiyuan Wang, Weibin Kong, Jianhua Huang, E Wu, Baotao Wu, Guang Wu*, and Heping Zeng*, Opt. Express 21, 6442, (2013).
15.Photoluminescence enhancement dependent on the orientations of single NV centers in nanodiamonds on a gold film, Gengxu Chen*, Yan Liu*, Min Song*, Botao Wu*, E Wu*, and Heping Zeng*, IEEE J.Sel. Top. Qunatum Electron. 19, 4602404, (2013).
16.Fabrication of nitrogen vacancy color centers by femtosecond pulse laser illumination, Yan Liu,Gengxu Chen, Min Song, Xueting Ci, Botao Wu, E Wu* and Heping Zeng*, Opt. Express 21, 12843, (2013).
17.Ultrasensitive mid-infrared up-conversion imaging at few-photon level, Qian Zhou,Kun Huang,Haifeng Pan,E Wu*,and Heping Zeng*, Appl. Phys. Lett. 102,241110 (2013).
18.Photon correlation in single-photon frequency upconversion, Xiaorong Gu, Kun Huang, Haifeng Pan, E Wu*, and Heping Zeng*, Opt. Express 20, 2399 (2012).
19.Synchronized Fiber Lasers for Efficient Coincidence Single-Photon Frequency Upconversion, Kun Huang, Xiaorong Gu, Haifeng Pan, E Wu*, and Heping Zeng*, IEEE J.Sel. Top. Qunatum Electron.J.Sel. Top. Qunatum Electron. 18, 562 (2012).
20.Few-photon-level two-dimensional infrared imaging by coincidence frequency upconversion, Kun Huang, Xiaorong Gu, Haifeng Pan, E Wu*, and Heping Zeng*, Appl. Phys. Lett. 100, 151102 (2012).
21.Photon-number-resolving detection at 1.04 μm via coincidence frequency upconversion, Kun Huang,Xiaorong Gu, Min Ren, Yi Jian, Haifeng Pan, Guang Wu, E Wu*, and Heping Zeng*, Opt. Lett. 36, 1722 (2011).