丁洪

中国科学院院士、上海交通大学李政道研究所副所长、凝聚态物理研究部主任、李政道讲席教授。

主要研究方向:
利用角分辨光电子能谱(ARPES)和扫描隧道显微镜(STM)实验手段,研究拓扑材料和高温超导体。


过去的主要成就及获得的成果:
取得了多项国际同行广泛认可的开创性成果:2018年在铁基超导中发现拓扑表面态和马约拉纳零能模(详情),2015年在固体材料中发现外尔费米子(详情),2008年在铁基超导体中观察到s-波超导序参量(详情),1996年在铜氧化合物超导体发现赝能隙(详情)。在学术期刊上发表了300多篇学术论文,其中 《Nature》/《Science》正刊11篇,《Nature》/《Science》子刊(Nature Physics, Nature Communications, Science Advances)24篇,《Physical Review Letters》45篇,总引用次数20224次,在国际学术会议作邀请报告150多次,包括回国以后在美国物理学会March Meeting的5次邀请报告,Gordon Conference的7次邀请报告和2023年Nobel Symposium的邀请报告。1995年获美国威斯康星同步辐射中心的阿拉丁光源奖,1999年获美国的斯隆奖,2003获美国波士顿学院杰出科研成就奖,2005年获中国国家杰出青年基金B类,2008年首批国家特聘专家,2010年获中国侨界“创新人才”贡献奖,2011年被选为美国物理学会会士,2014年获汤森路透中国引文桂冠奖和科研团队奖,2018年“固体中发现外尔费米子”成果文章入选美国物学会系列期刊诞生125周年纪念论文集,2018年获欧洲先进材料奖,2018年入选北京市有突出贡献的科学、技术、管理人才,2018年入选CCTV年度科技创新人物。2020年获中科院杰出科技成就奖(个人奖),2022年成为首批腾讯新基石研究员。2023年11月,当选为中国科学院院士。

代表性论文专著:

  1. L. Y. Kong, S. Y. Zhu, M. Papaj, L. Cao, H. Isobe, W. Y. Liu, D. F. Wang, P. Fan, H. Chen, Y. J. Sun, S. X. Du, J. Schneeloch, R. D. Zhong, G. D. Gu, L. Fu, H. J. Gao, H. Ding, “Half-integer level shift of vortex bound states in an iron-based superconductor”, Nature Physics 15, 1181 (2019).
  2. D. F. Wang, L. Y. Kong, P. Fan, H. Chen, Y. J. Sun, S. X. Du, J. Schneeloch, R. D. Zhong, G. D. Gu, L. Fu, H. Ding, H. J. Gao, “Evidence for Majorana bound state in an iron-based superconductor”, Science 362, 334 (2018).
  3. P. Zhang, K. Yaji, T. Hashimoto, Y. Ota, T. Kondo, K. Okazaki, Z. J. Wang, J. S. Wen, G. D. Gu, H. Ding, S. Shin, “Observation of topological superconductivity on the surface of iron-based superconductor”, Science 360, 182 (2018).
  4. B. Q. Lv, Z. L. Feng, Q. N. Xu, J. Z. Ma, L. Y. Kong, P. Richard, Y. B. Huang, V. N. Strocov, C. Fang, H. M. Weng, Y. G. Shi, T. Qian, H. Ding, “Observation of three-component fermions in the topological semimetal molybdenum phosphide”, Nature 546, 627 (2017).
  5. X. Shi, Z. Q. Han, P. Richard, X. X. Wu, X. L. Peng, T. Qian, S. C. Wang, J. P. Hu, Y. J. Sun, H. Ding, “FeTe1−xSex monolayer films: towards the realization of high-temperature connate topological superconductivity”, Science Bulletin 62, 503 (2017).
  6. B. Q. Lv, H. M. Weng, B. B. Fu, X. P. Wang, H. Miao, J. Ma, P. Richard, X. C. Huang, L. X. Zhao, G. F. Chen, Z. Fang, X. Dai, T. Qian, H. Ding, “Experimental discovery of Weyl semimetal TaAs”, Physical Review X 5, 031013 (2015).
  7. B. Q. Lv, N. Xu, H. M. Weng, J. Z. Ma, P. Richard, X. C. Huang, L. X. Zhao, G. F. Chen, C. Matt, F. Bisti, V. Strokov, J. Mesot, Z. Fang, X. Dai, T. Qian, M. Shi, H. Ding, “Observation of Weyl nodes in TaAs”, Nature Physics 11, 724-727 (2015).
  8. H. Ding*, P. Richard, K. Nakayama, K. Sugawara, T. Arakane, Y. Sekiba, A. Takayama, S. Souma, T. Sato, T. Takahashi, Z. Wang, X. Dai, Z. Fang, G. F. Chen, J. L. Luo, and N. L. Wang, “Observation of Fermi-surface–dependent nodeless superconducting gaps in Ba0.6K4Fe2As2”, EuroPhysics Letters 83, 47001 (2008).
  9. M. R. Norman, H. Ding, M. Randeria, J. C. Campuzano, T. Yokoya, T. Takeuchi, T. Takahashi, T. Mochiku, and K. Kadowaki, P. Guptasarma, D. G. Hinks, “Destruction of the Fermi Surface in Underdoped High Tc Superconductors”, Nature 392, 157 (1998).
  10. H. Ding*, T. Yokoya, J. C. Campuzano, T. Takahashi, M. Randeria, M. R. Norman, T. Mochiku, K. Kadowaki, J. Giapintzakis, “Spectroscopic evidence for a pseudogap in the normal state of underdoped high-T(c) superconductors”, Nature 382, 51 (1996).

社会兼职

  1. 2008 – 2020: Institute for Complex Adaptive Matter: Executive Committee, Board of Governors, Science Steering Committee
  2. 2011 – 2017: Physical Review X, editorial board member
  3. 2014 – 2017: IUPAP (International Union of Pure and Applied Physics, 国际纯粹与应用物理学联合会) Low Temperature subcommittee member (低温物理专业委员会委员)
  4. 2015 – 2019: Reports on Progress in Physics, editorial board member
  5. 2019 – now: Science, Board of Reviewing Editors