Prof. Fang Wang (王芳)

Deputy Director of the State Key Laboratory,

State Key Laboratory of Infrared Physics,

Shanghai Institute of Technical Physics, Chinese Academy of Sciences

Address: 500 Yu-Tian Road, Shanghai, China

Postcode: 200083

Email address: fwang@mail.sitp.ac.cn


Fang Wang is a recipient of the National Science Fund for Excellent Young Scholars. She currently serves as Deputy Director of the State Key Laboratory of Infrared Physics and Youth Research Fellow at the Shanghai Institute of Technical Physics, Chinese Academy of Sciences. Her research mainly focuses on novel infrared detectors and their intelligent remote sensing applications. As first author and corresponding author, she has published papers in journals including Nature Sensors (1), Nature Materials (1), Nature Electronics (1), Nature Communications (4), Science Advances (1), Light: Science & Applications (2), IEEE Electron Device Letters and IEEE Transactions on Electron Devices. Her publications have accumulated over 6900 SCI citations, with an h-index of 39. She has 1 ESI Hot Paper (top 0.1% globally) and 5 ESI Highly Cited Papers (top 1% globally). Her research work has been highly commended by the editorial board of Nature Communications, and one of her achievements was selected as the cover story of Nature Sensors. She has been granted 11 Chinese and US invention patents.

She was named a Clarivate Highly Cited Researcher in 2024, received the Key International Collaborative Research Project of the National Natural Science Foundation of China in 2025, and received the Outstanding Science and Technology Achievement Award of the Chinese Academy of Sciences (3/5), the First Prize of Natural Science of the China Electronics Institute (3/5), and the First Prize of Natural Science of the Chinese Society for Optical Engineering (3/5), among other awards. She currently holds concurrent academic positions, including Editorial Board Member of the international SCI journal Opto-Electronics Review, Managing Editor of Infrared Physics & Technology, Associate Editor of Journal of Infrared and Millimeter Waves, Youth Editorial Board Member of Science Bulletin and Science China Physics, Mechanics & Astronomy, as well as Vice Chair of IEEE NTC Shanghai Section Chapter.

Google scholar

Research Areas

1. Multi-dimensional perception infrared detection based on novel quantum materials. The research specifically explores new mechanisms of infrared photodetection via topological quantum modulation, moiré twist modulation and ferroelectric polarization field modulation, and develops innovative infrared detectors with multi-dimensional perception capabilities such as spectral and polarization detection

Keywords: infrared detector; photodetector; intelligent infrared detector; two-dimensional photodetector; van der Waals heterojunction; localized ferroelectric polarization field; moiré twist modulation; intelligent spectrometer; multi-dimensional infrared detector; room-temperature detector; polarization detection; ferroelectric material; black phosphorus (BP); BP/MoS₂; mercury cadmium telluride (HgCdTe) detector

2. AI-enabled multi-scale intelligent remote sensing and infrared detection. It mainly covers in-sensor computing integrated infrared detection technology, intelligent processing of remote sensing images for deep space and Earth observation, and sustainable development research driven by remote sensing big data

Keywords: spectral remote sensing; deep space exploration; artificial intelligence; long-term remote sensing data; multispectral and hyperspectral satellites; real-time signal processing; deep learning based on physical mechanisms; parameter inversion of lunar and asteroid surfaces; parameter prediction at large spatial scales; remote sensing image interpretation; cross-scale data collaboration; multimodal learning; few-shot learning; transfer learning; large model multi-agent; infrared small target detection; carbon emission facility monitoring; urban land surface temperature inversion; urban livability accessibility and equity

Selected Journal Publications

2026

[43] Haozhe Li, Haoran Mu*, Wenzhi Yu, Yang Zhou, Kaiwen Gong, Yun Li, Jianxian He, Chen Chen, Jinkui Zhao, Daohua Zhang, Xiaoxue Song, Yuan Yang*, Fang Wang*, Guanyu Zhang, Shenghuang Lin*, Mid-infrared vision sensor based on Suspended Perovskite Oxides Down to Nanometer Scale, National Science Review, nwag499, (2026).

[42] Zhihao Wu#, Ruiqi Jiang#, Fuxing Dai#, Yongfeng Jia, Zexi Liu, Qijun Kao, Xinyue Lv, Lei Ye, Yanlin Wu, Hangrui Shi, Zhangxinyu Zhou, Jin Wang, Peisong Peng, Xiao Zhuo, Hailu Wang, Chuanbin Wang, Guoqiang Luo, Piotr Martyniuk, Jinzhong Zhang*, Yi Sun*, Fang Wang*, Junhao Chu, Room-temperature broadband mid-infrared photodetectors based on vertical metal-BP Schottky contacts, SCIENCE CHINA Information Sciences, Advance online publication, (2026). DOI: 10.1007/s11432-026-4992-7.

[41] Jinning Li#, Xuming Shi#, Bin Liu, Rong Wang, Zhendong Wang, Meizhu Wang, Gang Lv, Liyin Yuan, Qian Ma, Guoliang Yuan, Rui Xu*, Chunlai Li*, Fang Wang*, Zhiping He*, High-fidelity in-situ spectroscopy under thermal extremes enables cross-scale validation of the Chang’e-6 landing area, PhotoniX, 7, 44 (2026).

[40] Fuxing Dai, Fang Wang*, Xiao Fu, Ruiqi Jiang, Xiao Zhuo, Liqi Zhu, Boris Mizaikoff, Xun Li*, Chun Lin, Weida Hu*, Revised Carrier Transport Model Based on Depletion Region Boundary Dynamic Equilibrium for MWIR HgCdTe, IEEE Transactions on Electron Devices, 73, 7 (2026).

[39] Jiawei Jing#, Jiamei Chen#, Xing Xin#, Peisong Peng, Zhihao Wu, Weiheng Zhong, Hanyu Zhang, Wanfu Shen, Jihua Zhang, Yuwei Shan, Yuanzheng Li, Xingang Zhao, Wei Xin*, Fang Wang*, Weida Hu, Haiyang Xu*, Yichun Liu, Dielectric-Confinement-Induced in-Plane Photoelectric Anisotropy in Isotropic Quasi-1D γ-GaS Nanoribbon, Advanced Science, e75736 (2026).

[38] Xuming Shi#, Jian Chen#, Juntao Wang#, Shijie Liu*, Xiaohua Tong*, Jinning Li, Zeyi Yan, Shiji Wen, Huan Xie, Zhiping He*, Junhao Chu, Weida Hu*, Fang Wang*, Refined lunar global chemistry mapping using farside first ground truth from Chang’E-6, Nature Sensors, 1, 232–240 (2026). Cover of Nature Sensors. Highlighted by: Xinhua Net; China Daily; CGTN.

[37] Yingdong Wei, Wenchuan Jing, Yanlin Wu, Xun Ge, Taikang Chen, Libo Zhang, Xiangqi Liu, Zhen Hu, Xiaokai Pan, Yage Yang, Xiao Zhuo, Shiqi Lan, Yichong Zhang, Shi Zhang, Li Han, Wei Ren, Dawei Shen, Fang Wang*, Yanfeng Guo*, Lin Wang*, Wei Lu, Xiaoshuang Chen, Weida Hu, Harnessing Van Hove singularities for terahertz photoresponse via Fermi surface reconstruction in kagome lattices, Nature Communications, 17, 885 (2026).

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2025

[36] Wei Xin, Yanan Fu, Fuxing Dai, Yimeng Shi, Jiawei Jing, Yuanzheng Li*, Jixiu Li, Zhihao Wu, Yanlin Wu, Chuxin Yan, Rongjian Ma, Qingbin Wang, Chenmeng Zhao, Guoliang Yuan, Weizhen Liu, Xiao Zhuo*, Fang Wang*, Weida Hu, Haiyang Xu*, Yichun Liu, Bioinspired y-InSe Opto-sensor Exhibiting Enhanced Visual Adaptation Mediated by Polarization Sensitivity, Advanced Functional Materials, 35, e08546 (2025).

[35] Qian Yang#, Xuming Shi#, Fang Wang*, Heqin Cheng,* Yusen Luo, Zhenqi Li, Zhongda Ren, Weijie Ding, Junhao Wu, Hong Jiang, Zhen Han, and Wei Fan, Trends in Fishery Ecosystem Stability in the East China Sea under Dual Pressures of Fishing and Global Warming, Environmental Science & Technology, 59, 12596-12605 (2025).

[34] Zeyi Yan, Xuming Shi, Lingjia Gu*, Zhuoyue Hu*, Fansheng Chen, Zhiping He, Weida Hu, Fang Wang*, Hierarchy features attention network for tiny ship detection from SDGSAT-1 thermal infrared images, Remote Sensing of Environment, 328, 114842 (2025).

[33] Xin Sun, Kening Xiao, Yingdong Wei, Wenqi Mo, Libo Zhang*, Shijian Tian, Xiaokai Pan, Yage Yang, Shiqi Lan, Yichong Zhang, Zhen Hu, Kaixuan Zhang, Li Han, Fang Wang*, Xiaoshuang Chen, Lin Wang*, Weida Hu*, Reconfigurable terahertz optoelectronic logic through charge-density-wave phase engineering, Nature Communications, 16, 4736 (2025).

[32] Qijun Kao#, Yongfeng Jia#, Zhihao Wu, Zhangxinyu Zhou, Xun Ge, Jian Peng, Piotr Martyniuk, Jin Wang*, Chuanbin Wang*, Fang Wang*, Unraveling the infrared detection properties of Bi2Te3 depending on thickness under the semiconductor and metal surface states, Nanoscale, 17, 8524-8532 (2025).

[31] Hangyu Xu, Runzhang Xie, Jinshui Miao, Zhenhan Zhang, Haonan Ge, Xuming Shi, Min Luo, Jinjin Wang, Tangxin Li, Xiao Fu, Johnny C. Ho, Peng Zhou, Fang Wang* and Weida Hu*, Critical band-to-band-tunnelling based optoelectronic memory, Light: Science & Applications, 14, 72 (2025). ESI Highly Cited Paper

[30] Dong Wang#, Liu Yang#, Zhen Hu#, Fang Wang*, Yage Yang, Xiaokai Pan, Zhuo Dong, Shijian Tian, Libo Zhang, Li Han, Mengjie Jiang, Keqin Tang, Fuxing Dai, Kai Zhang*, Wei Lu, Xiaoshuang Chen, Lin Wang*, Weida Hu, Antiferromagnetic semimetal terahertz photodetectors enhanced through weak localization, Nature Communications, 16, 25 (2025).

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2024

[29] Jingjing Fu, Hangrui Shi, Miao Cai, Mengjian Xu, Yuxin Fu, Jinhua Zhang, Xuguang Guo*, Fang Wang*, Yiming Zhu*, and Antoni Rogalski, Non-Volatile and Gate-Controlled Multistate Photovoltaic Response in WSe2/h-BN/Graphene Semi-Floating Gate Field-Effect Transistors, Advanced Optical Materials, 12, 2400638 (2024).

[28] Fang Wang, Jin Wang, Runzhang Xie*, and Weida Hu*, In-sensor visual adaptation across the spectrum, Nature Electronics, 7, 634-635 (2024).

[27] Fang Wang, Tao Zhang, Runzhang Xie, Anna Liu, Fuxing Dai, Yue Chen, Tengfei Xu, Hailu Wang, Zhen Wang, Lei Liao, Jianlu Wang, Peng Zhou, Weida Hu*, Next-generation Photodetectors Beyond van der Waals Junctions, Advanced Materials, 36(3), 2301197 (2024).

[26] Fuxing Dai, Fang Wang*, Haonan Ge, Runzhang Xie, Ruiqi Jiang, Hangrui Shi, Han Liu, Gangjian Hu, Liang Shen, Tianxin Li, and Weida Hu*, Anomalous Non-equilibrium State Response of Long-Wavelength HgCdTe Infrared Detectors, IEEE Electron Device Letters, 45, 16-19 (2024).

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2023

[25] Fang Wang and Weida Hu*, All-2D electronics for AI processing, Nature Materials, 22, 1433-1434 (2023).

[24] Fang Wang#, Tao Zhang#, Runzhang Xie*, Zhen Wang*, and Weida Hu*, How to Characterize Figures of merit of Two-dimensional Photodetectors, Nature Communications, 4, 2224 (2023). ESI Hot Paper Featured in a Nature Communications Editors' Highlights webpage. ESI Highly Cited Paper.

[23] Yusen Luo, Yanan Yang, Sijing He, Mengxing Dou, Rui Wang, Tao Zhang, Jun Zhao*, Fang Wang*, Exploring the effect of industrial structure on urban heat island effect with infrared observations, Infrared Physics & Technology, 130, 104615 (2023).

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2022

[22] Fang Wang#, Zhiyi Liu#, Tao Zhang#, Mingsheng Long*, Xiuxiu Wang, Runzhang Xie, Haonan Ge, Hao Wang, Jie Hou, Yue Gu, Xin Hu, Ze Song, Suofu Wang, Qingsong Dong, Kecai Liao, Yubing Tu, Tao Han, Feng Li, Zongyuan Zhang, Xingyuan Hou, Shaoling Wang, Liang Li, Xueao Zhang, Dongxu Zhao, Chongxin Shan, Lei Shan* and Weida Hu*, Fully depleted self-aligned heterosandwiched van der Waals photodetectors, Advanced Materials, 34, 2203283, (2022). ESI Highly Cited Paper

[21] Mingsheng Long*, Zhen Shen, Ruijie Wang, Qingsong Dong, Zhiyi Liu, Xin Hu, Jie Hou, Yuan Lu, Fang Wang* Dongxu Zhao, Fei Ding, Yubing Tu, Tao Han, Feng Li, Zongyuan Zhang, Xingyuan Hou, Shaoliang Wang, and Lei Shan*, Ultrasensitive Solar-blind Ultraviolet Photodetector Based on FePSe3/MoS2 Heterostructure Response to 10.6 µm, Advanced Functional Materials, 32, 2204230 (2022).

[20] Qingsong Dong#, Fang Wang#, Xin Hu, Yuan Lu, Dongxu Zhao, Min Zhang*, Tao Han, Xingyuan Hou, Shaoliang Wang, Mingsheng Long*, Lei Shan, High-performance broadband photodetector based on PdSe2/black phosphorus heterodiode, Applied Physics Letters, 120, 231103, (2022).

[19] Fang Wang, Fuxing Dai, Yantao Li, Huijun Guo*, Distinct junction transformations of pixel-arrayed long-wavelength infrared detectors by photocurrent mapping, Infrared Physics & Technology, 125, 104309 (2022).

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2021

[18] Fang Wang#, Xuming Zou#, Mengjian Xu#, Hao Wang#, Hailu Wang, Huijun Guo, Jiaxiang Guo, Peng Wang, Meng Peng, Zhen Wang, Yang Wang, Jinshui Miao, Fansheng Chen, Jianlu Wang, Xiaoshuang Chen, * Anlian Pan, Chongxin Shan, Lei Liao,* and Weida Hu*, Recent Progress on Electrical and Optical Manipulations of Perovskite Photodetectors, Advanced Science, 8, 2100569 (2021).

[17] Meng Peng, Runzhang Xie, Zhen Wang*, Peng Wang*, Fang Wang*, Haonan Ge, Yang Wang, Fang Zhong, Peisong Wu, Jiafu Ye, Qing Li, Lili Zhang, Xun Ge, Yan Ye, Yuchen Lei, Wei Jiang, Zhigao Hu, Feng Wu, Xiaohao Zhou, Jinshui Miao, Jianlu Wang, Hugen Yan, Chongxin Shan, Jiangnan Dai, Changqing Chen, Xiaoshuang Chen, Wei Lu, Weida Hu*, Blackbody sensitive room-temperature infrared photodetectors based on low-dimensional tellurium grown by chemical vapor deposition, Science Advances, 7, eabf7358 (2021). ESI Highly Cited Paper

[16] Hailu Wang#, Fang Wang#, Hui Xia*, Peng Wang, Tianxin Li, Juzhu Li, Zhen Wang, Jiamin Sun, Peisong Wu, Jiafu Ye, Qiandong Zhuang, Zaixing Yang, Lan Fu, Weida Hu*, Xiaoshuang Chen*, Wei Lu*, Direct observation and manipulation of hot electrons at room temperature, National Science Review, 8, nwaa295 (2021).

[15] Hailu Wang#, Fang Wang#, Tengfei Xu, Hui Xia*, Runzhang Xie, Xiaohao Zhou, Xun Ge, Weiwei Liu, Yicheng Zhu, Liaoxin Sun, Jiaxiang Guo, Jiafu Ye, Muhammad Zubair, Man Luo, Chenhui Yu, Deyan Sun, Tianxin Li, Qiandong Zhuang, Lan Fu, Weida Hu*, and Wei Lu*, Slowing Hot-Electron Relaxation in Mix-Phase Nanowires for Hot-Carrier Photovoltaics, Nano Letters, 21, 7761–7768 (2021).

[14] Mengjian Xu, Tengfei Xu, Anqi Yu, Hailu Wang, Hao Wang, Muhammad Zubair, Man Luo, Chongxin Shan, Xuguang Guo, Fang Wang*, Weida Hu*, Yiming Zhu*, Optoelectronic Synapses Based on Photo-Induced Doping in MoS2/h-BN Field-Effect Transistors, Advanced Optical Materials, 9, 2100937 (2021).

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2020

[13] Mingsheng Long*, Fengkui Liu, Fei Ding, Yang Wang, Jiafu Ye, Runzhang Xie, Hao Wang, Mengjian Xu, Fang Wang*, Yubing Tu, Tao Han, Feng Li, Zongyuan Zhang, and Liwei Liu*, Scalable fabrication of long-wave infrared PtSe2-G heterostructure array photodetectors, Applied Physics Letters, 117, 231104 (2020).

[12] Jiale He, Peng Wang*, Qing Li , Fang Wang*, Yue Gu, Chuan Shen, Lu Chen, Piotr Martyniuk, Antoni Rogalski, Xiaoshuang Chen, Wei Lu, and Weida Hu*, Enhanced Performance of HgCdTe Long-Wavelength Infrared Photodetectors With nBn Design, IEEE Transactions on Electron Devices, 67, 2001-2007, (2020).

[11] Chenglong Li, Hailu Wang, Fang Wang*, Tengfei Li, Mengjian Xu, Hao Wang, Zhen Wang, Xiaowei Zhan, Weida Hu*,and Liang Shen*, Ultrafast and broadband photodetectors based on a perovskite/organic bulk heterojunction for large-dynamic-range imaging, Light: Science & Applications, 9, 31 (2020). ESI Hot Paper, ESI Highly Cited Paper

[10] Zhen Wang, Peng Wang, Fang Wang*, Jiafu Ye, Ting He, Feng Wu, Meng Peng, Peisong Wu, Yunfeng Chen, Fang Zhong, Runzhang Xie, Zhuangzhuang Cui, Liang Shen, Qinghua Zhang*, Lin Gu, Man Luo, Yang Wang, Huawei Chen, Peng Zhou, Anlian Pan, Xiaohao Zhou*, Lili Zhang, Weida Hu*, A Noble Metal Dichalcogenide for High‐Performance Field‐Effect Transistors and Broadband Photodetectors, Advanced Functional Materials, 30, 1907945 (2020).

[9] Shali Wei#, Fang Wang#, Xuming Zou*, Liming Wang, Chang Liu, Xingqiang Liu, Weida Hu, Zhiyong Fan, Johnny C. Ho*, and Lei Liao*,Flexible quasi-2D perovskite/IGZO phototransistors for ultrasensitive and broadband photodetection, Advanced Materials, 32, 1907527 (2020).

[8] Qing Li#, Fang Wang#, Peng Wang*, Lili Zhang, Jiale He, Lu Chen, Piotr Martyniuk, Antoni Rogalski, Xiaoshuang Chen, Wei Lu, and Weida Hu*, Enhanced performance of HgCdTe mid-wavelength infrared electron avalanche photodetectors with guard ring design, IEEE Transactions on Electron Devices, 67, 2958105 (2020) .

[7] Yulian Li*, Linzhi Li, Fang Wang*, Haonan Ge, Runzhang Xie, Bowen An, Two broad absorption bands in infrared atmosphere transparent windows by trapezoid multilayered grating, Optical Materials Express, 10, 682-692 (2020).

[6] Zehua Huang, Yadong Jiang, Qi Han, Ming Yang, Jiayue Han, Fang Wang*, Man Luo, Qing Li, He Zhu, Xianchao Liu, Jun Gou, Jun Wang*, High responsivity and fast UV-Vis-SWIR photodetector based on Cd3As2/MoS2 heterojunction, Nanotechnology, 31, 064001, (2020).

[5] Gaoqi Cao#, Fang Wang#, Meng Peng#, Xiumei Shao, Bo Yang, Weida Hu,* Xue Li,* Jing Chen, Yabin Shan, Peisong Wu, Laigui Hu, Ran Liu, Haimei Gong, Chunxiao Cong,* and Zhi-Jun Qiu*, Multicolor Broadband and Fast Photodetector Based on InGaAs–Insulator–Graphene Hybrid Heterostructure, Advanced Electronic Materials, 6, 1901007 (2020).

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2019

[4] Peng Wang, Hui Xia, Qing Li, Fang Wang*, Lili Zhang, Tianxin Li*, Piotr Martyniuk, Antoni Rogalski, Weida Hu*, Sensing Infrared Photons at Room Temperature: From Bulk Materials to Atomic Layers, Small, 15, 1904396 (2019).

[3] Fang Wang, Anyang Cui, Huimin Sun, Bin Zhou, Liping Xu, Kai Jiang, Liyan Shang, Zhigao Hu*, Junhao Chu, Electronic bandgap manipulation of monolayer WS2 by vertically coupled insulated Mg(OH)2 layers, Journal of Alloys and Compounds, 785, 156-162 (2019).

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2018 and Before

[2] Fang Wang, B. Zhou, Huimin Sun, Anyang Cui, Ting Jiang, Liping Xu, Kai Jiang, Liyan Shang, Zhigao Hu*, Difference analysis model for the mismatch effect and substrate-induced lattice deformation in atomically thin materials, Physical Review B, 98, 245403 (2018).

[1] Fang Wang, Junyong Wang, Shuang Guo, Jinzhong Zhang, Zhigao Hu* & Junhao Chu, Tuning Coupling Behavior of Stacked Heterostructures Based on MoS2, WS2, and WSe2, Scientific Reports, 7, 44712 (2017).

Awards and Honors

2026, Outstanding Science and Technology Achievement Award of the Chinese Academy of Sciences (3/5) 中国科学院杰出科技成就奖

2026, First Prize in Natural Science, China Electronics Institute (3/5) 中国电子学会自然科学一等奖

2024, National Science Fund for Excellent Young Scholars 国家优秀青年基金

2024, Clarivate Highly Cited Researcher 科睿唯安全球高被引学者

2024, First Prize in Natural Science, Chinese Society for Optical Engineering (3/5) 中国光学工程学会自然一等奖

2024, Shanghai Rising-Star Program for Young Scientists 上海市青年科技启明星计划

2022, Shanghai Rising Star for Women Innovation 上海市巾帼创新未来之星

Professional activities

2026 - present, Science Bulletin (SCI Impact factor 21.1), Young Editorial Board Member

2026 - present, Infrared Physics & Technology (SCI Impact factor 3.8), Managing Editor

2024 - present, Journal of Infrared and Millimeter Waves (SCI Impact factor 0.6), Associate Editor

2024 - present, Opto-Electronics Review (SCI Impact factor 0.9), Editorial Board Member

2024 - present, Science China Physics, Mechanics & Astronomy (SCI Impact factor 7.5), Young Editorial Board Member

2023 - present, IEEE NTC Shanghai Section Chapter, Vice Chair

2023 - present, Earth & Space: from lnfrared to Terahertz(ESIT), Youth Program Committee Member

Students

Undergraduate students

Bo Wang王博,硕博连读生,080903-微电子学与固体电子学

Siyu Chen陈思雨,硕博连读生,080903-微电子学与固体电子学

Zexi Liu刘泽西,博士生,080903-微电子学与固体电子学

Xuming Shi石绪明,博士生,080903-微电子学与固体电子学

Guoliang Yuan袁国梁,博士生,080903-微电子学与固体电子学

Yongfeng Jia贾永峰,博士生,080903-微电子学与固体电子学

Zhihao Wu 吴志豪,硕博连读生,080903-微电子学与固体电子

Zhangxinyu Zhou周张欣雨,硕博连读生,080903-微电子学与固体电子学

Yanlin Wu吴彦麟,硕博连读生,070205-凝聚态物理

Hangrui Shi石航睿,硕博连读生,080903-微电子学与固体电子学 获2024国家奖学金

Fuxing Dai代福兴,硕博连读生,080903-微电子学与固体电子学 获2025国家奖学金

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Postgraduate students and Postdoctoral fellows

Ruiqi Jiang姜睿琪,硕博连读生,凝聚态物理,毕业去向:中国科学院上海技术物理研究所(博士后,上海)