胡偉達(中國科學院上海技術物理研究所研究員)

胡偉達(中國科學院上海技術物理研究所研究員)

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胡偉達,男,1979年生,二級研究員,博士生導師,中科院上海技術物理研究所所務委員,國重主任。國家傑出青年基金獲得者,中國青年科技獎入選者先導專項國家重點研發計畫首席科學家,國家重大科研儀器研製項目、基礎加強重點項目負責人,Clarivate全球高被引學者。

基本介紹

  • 中文名:胡偉達
  • 國籍中國
  • 出生日期:1979年10月
  • 畢業院校:武漢理工大學(本科)、武漢理工大學(碩士)、中國科學院上海技術物理研究所(博士)
  • 學位/學歷:博士
  • 職務:中科院上海技術物理研究所所務委員,國重主任
  • 主要成就:國家傑出青年基金獲得者
    國家重點研發計畫首席科學家
    中國青年科技獎入選者
    先導專項首席科學家 
  • 技術職稱:研究員
國際學術任職,獎勵與人才計畫,研究方向,代表性論文,

國際學術任職

2023 - present, Small (Wiley, SCI Impact factor =13.3), Editorial Advisory Board Member
2015 - present, Infrared Physics & Technology (Elsevier, SCI Impact factor =3.3), Associate Editor
2013 - present, Optical and Quantum Electronics (Springer Nature, SCI Impact factor =3), Executive Editor
2020 - present, Science China-Physics Mechanics & Astronomy (Springer Nature, SCI Impact factor =6.4), Young Scientist Committee
2013 - present, International Conference on Numerical Simulation of Optoelectronic Devices (Canada, Spain, Chinese Taipei, China, USA, China Hangkong), Program Committee, Session Chair
2022 - present, IEEE Shanghai Section NTC Chapter, Chair
2022 - present, IEEE Nanotechnology Council, Nanofabrication TC-03, Co-chair
2022 - present, IEEE Nanotechnology Council, Distinguished Lecturers 2022
2022, IEEE Nanotechnology Materials and Devices Conference (IEEE NMDC 2022), Advisory Committee, Nanjing, China
2023, Earth & Space: from Infrared to Terahertz International Conference (ESIT 2023), Executive Chair

獎勵與人才計畫

2023年,上海市自然科學一等獎(第一完成人)
2022-2023年,全球高被引學者(Clarivate)
2022年,中國光學十大進展: Nature Electronics, 4, 357 (2021)(套用研究類)
2022年,中國半導體十大研究進展: Science, 373, 1353 (2021)
2021年,中國物理學會薩本棟套用物理獎
2018年,中國青年科技獎
2017年,英國皇家學會牛頓高級學者計畫
2017年,國家傑出青年基金
2015年,國家“萬人計畫”青年拔尖人才
2013年,國家優秀青年基金

研究方向

1、面向紅外感知與智慧型識別的新型光電探測器及晶片,包括新型二維材料紅外探測器、人工微納結構增強紅外探測器、感存算一體智慧型晶片
2、面向空間套用的第三代高性能紅外探測器及晶片,包括長波/甚長波紅外探測器、雙色紅外探測器、雪崩單光子紅外探測器

代表性論文

1.Tangxin Li, Jinshui Miao*, Xiao Fu, Bo Song, Bin Cai, Xun Ge, Xiaohao Zhou, Peng Zhou, Xinran Wang, Deep Jariwala *, Weida Hu*, Reconfigurable, non-volatile neuromorphic photovoltaics, Nature Nanotechnology, 18, 1303-1310 (2023). https://doi.org/10.1038/s41565-023-01446-8
2. Ting He, Hui Ma, Zhen Wang, Qing Li*, Shuning Liu, Shikun Duan, Tengfei Xu, Jiacheng Wang, Haitao Wu, Fang Zhong, Yuting Ye, Jianghong Wu, Shuo Lin, Kun Zhang, Piotr Martyniuk, Antoni Rogalski, Peng Wang, Lan Li, Hongtao Lin*, and Weida Hu*, On-chip optoelectronic logic gates operating in the telecom band, Nature Photonics, 18, 60-67 (2024). https://doi.org/10.1038/s41566-023-01309-7 Cover of Nature Photonics
3. Yunfeng Chen, Yang Wang, Zhen Wang, Yue Gu, Yan Ye, Xuliang Chai, Jiafu Ye, Yan Chen, Runzhang Xie, Yi Zhou, Zhigao Hu, Qing Li, Lili Zhang, Fang Wang, Peng Wang, Jinshui Miao, Jianlu Wang, Xiaoshuang Chen, Wei Lu, Peng Zhou*, Weida Hu*, Unipolar barrier photodetectors based on van der Waals heterostructures, Nature Electronics, 4, 357-363 (2021). https://doi.org/10.1038/s41928-021-00586-w
4. Lei Tong, Zhuiri Peng, Runfeng Lin, Zheng Li, Yilun Wang, Xinyu Huang, Kan-Hao Xue, Hangyu Xu, Feng Liu, Hui Xia, Peng Wang, Mingsheng Xu, Wei Xiong, Weida Hu*, Jianbin Xu, Xinliang Zhang, Lei Ye*, Xiangshui Miao, 2D materials–based homogeneous transistor-memory architecture for neuromorphic hardware, Science, 373 (6561), 1353-1358 (2021). https://doi.org/10.1126/science.abg3161
5. Zhenhan Zhang, Shuiyuan Wang, Chunsen Liu, Runzhang Xie, Weida Hu* and Peng Zhou*, All-in-one two-dimensional retinomorphic hardware device for motion detection and recognition, Nature Nanotechnology, 17, 27-32 (2022). https://doi.org/10.1038/s41565-021-01003-1
6. Huawei Chen, Xiaoyong Xue, Chunsen Liu, Jinbei Fang, Zhen Wang, Jianlu Wang, David Wei Zhang, Weida Hu*, and Peng Zhou*, Logic gates based on neuristors made from two-dimensional materials, Nature Electronics, 4, 399-404 (2021). https://doi.org/10.1038/s41928-021-00591-z Cover of Nature Electronics
7. Guanyu Liu, Ziao Tian, Zhenyu Yang, Zhongying Xue, Miao Zhang, Xudong Hu, Yang Wang, Yuekun Yang, Paul K. Chu, Yongfeng Mei, Lei Liao, Weida Hu*, Zengfeng Di*, Graphene-assisted metal transfer printing for wafer-scale integration of metal electrodes and two-dimensional materials, Nature Electronics, 5, 275-280 (2022). https://doi.org/10.1038/s41928-022-00764-4

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