简介:
副研究员,博士生导师。2013年本科毕业于北京航空航天大学,2020年博士毕业于中国科学院物理研究所,随后加入中国科学院物理研究所从事研究工作。主要研究方向为新奇量子态的物性表征和物态调控,使用扫描隧道显微镜和扫描微波阻抗显微镜等手段研究铁基超导马约拉纳零能模、低维信息材料及器件、新型磁性材料等。主持国家自然科学基金委青B项目、面上项目,科技部重点研发项目,北京市科技新星项目等。
主要研究方向:
铁基超导体中马约拉纳零能模
低维量子材料的可控构筑与物性调控
扫描探针系统的多场调控与多模工况表征技术
新奇磁性材料的构型调控与磁电耦合
极低温矢量磁场扫描隧道显微术(STM)
极低温矢量磁场扫描微波阻抗显微术(sMIM)
极低温矢量磁场磁力显微术(MFM)
过去的主要工作及获得的成果:
发表SCI论文36篇,引用3300余次,其中以第一/通讯作者(含共同)发表论文包括:1篇Science、1篇Nature Physics、5篇Nature Communications、1篇Physical Review X、2篇Physical Review Letters、1篇Nano Letters等:
(1)发现马约拉纳零能模中近量子化的电导平台。在FeTe0.45Se0.55表面的磁通涡旋中,通过连续可控的改变针尖与单晶样品之间的隧穿耦合强度,观测到了磁通涡旋中马约拉纳零能模的近量子化电导平台特征,给出了铁基超导体中存在马约拉纳零能模的关键性的实验证据。该研究工作被多家国际媒体报道,并被同期Science杂志的“Perspective”栏目进行了高亮报道,称该工作“provide quantitative evidence for the existence of Majorana modes(为马约拉纳零能模的存在提供了定量化的证据)”。[Science, 2020, ESI高被引]
(2)铁基超导体中马约拉纳零能模的拓扑本质。在FeTe0.55Se0.45样品表面系统性的研究了拓扑和平庸两类磁通涡旋的量子化束缚态能级和空间分布特征,发现了磁通涡旋束缚态的半整数嬗移,阐明了马约拉纳零能模的拓扑本质以及存在或消失的微观机制。该研究工作被多家国际媒体报道,并被Nature Reviews Physics杂志“Year in Review”栏目进行了高亮报道。[Nat. Phys., 2019, ESI高被引]



代表性论文及专利:
[1]Shiyu Zhu#, Lingyuan Kong#, Lu Cao#, Hui Chen#, Michał Papaj, Shixuan Du, Yuqing Xing, Wenyao Liu, Dongfei Wang, Chengmin Shen, Fazhi Yang, John Schneeloch, Ruidan Zhong, Genda Gu, Liang Fu, Yu-Yang Zhang*, Hong Ding*, and Hong-Jun Gao*. Nearly quantized conductance plateau of vortex zero mode in an iron-based superconductor. Science 367, 189 (2020). (ESI Highly Cited) [PhysOrg] [Perspective] [Progress]
[2]Lingyuan Kong#, Shiyu Zhu#, Michał Papaj#, Hui Chen#, Lu Cao, Hiroki Isobe, Yuqing Xing, Wenyao Liu, Dongfei Wang, Peng Fan, Yujie Sun, Shixuan Du, John Schneeloch, Ruidan Zhong, Genda Gu, Liang Fu*, Hong-Jun Gao*, Hong Ding*. Half-integer level shift of vortex bound states in an iron-based superconductor. Nature Physics 15, 1181 (2019). (ESI Highly Cited) [Progress]
[3]Yunhao Wang#, Shiyu Zhu#*, Chensong Hua#, Guojing Hu, Linxuan Li, Senhao Lv, Jianfeng Guo, Jiawei Hu, Runnong Zhou, Zizhao Gong, Chengmin Shen, Zhihai Cheng, Jinan Shi, Wu Zhou, Haitao Yang, Weichao Yu*, Jiang Xiao and Hong-Jun Gao*. Controllable Highly Oriented Skyrmion Track Array in Bulk Fe3GaTe2. Physical Review X 15, 021032 (2025). [Progress]
[4]Jianfeng Guo#, Shiyu Zhu#*, Runnong Zhou#, Ruwen Wang#, Yunhao Wang, Jianping Sun, Zhen Zhao, Xiaoli Dong, Jinguang Cheng, Haitao Yang*, Jiang Xiao*, and Hong-Jun Gao*. Tunable bifurcation of magnetic anisotropy and bi-oriented antiferromagnetic order in kagome metal GdTi3Bi4. Physical Review Letters 134, 226704 (2025). [Progress]
[5]Jiaqi Fang#, Jiawei Hu#, Xintian Chen#, Yaotian Liu#, Zheng Yin, Zhe Ying, Yunhao Wang, Ziqiang Wang, Zhilin Li*, Shiyu Zhu*, Yang Xu*, Sokrates T. Pantelides, and Hong-Jun Gao*. Electrothermal manipulation of current-induced phase transitions in ferrimagnetic Mn3Si2Te6. Physical Review Letters 134, 256302 (2025). (Editor’s Suggestion) [Progress]
[6]Xianghe Han#, Hui Chen#*, Zhongyi Cao#, Jingwen Guo, Chuyi Tuo, Ming-Rui Li, Fucong Fei, Hengxin Tan, Jianfeng Guo, Yanhao Shi, Runnong Zhou, Ruwen Wang, Zhen Zhao, Haitao Yang, Fengqi Song, Hong Yao, Binghai Yan, Shiyu Zhu*, Ziqiang Wang* and Hong-Jun Gao*. Unconventional spin-intertwined charge density wave in magnetic phases of kagome metal GdTi3Bi4. Nature Communications 17, 2667 (2026). [Progress]
[7]Zichao Chen#, Shiyu Zhu#*, Kailin Xu#, Ruwen Wang, Ningning Wang, Jianfeng Guo, Yunhao Wang, Xianghe Han, Zhongyi Cao, Jianping Sun, Hui Chen, Haitao Yang, Jinguang Cheng, Ziqiang Wang* and Hong-Jun Gao*. Spin-mediated hysteretic switching of unidirectional charge density waves by rotating magnetic fields. Nature Communications 17, 6411 (2026). [Progress]
[8]Jiawei Hu#, Shiyu Zhu#*, Bohao Li#, Yunhao Wang#, Shuigang Xu, Zhihai Cheng, Chengmin Shen, Andre K. Geim, Fengcheng Wu* and Hong-Jun Gao*. Simultaneous nanoscale imaging of local conductivity and chemical potential in a quantum Hall isospin ferromagnet. Nature Communications 17, 7986 (2026). [Progress]
[9]Lingyuan Kong#, Lu Cao#, Shiyu Zhu#, Michał Papaj#, Guangyang Dai, Geng Li, Peng Fan, Wenyao Liu, Fazhi Yang, Xiancheng Wang, Shixuan Du, Changqing Jin, Liang Fu, Hong-Jun Gao*, Hong Ding*. Majorana zero modes in impurity-assisted vortex of LiFeAs superconductor. Nature Communications 12, 4146 (2021). [Progress]
[10]Wenyao Liu#, Lu Cao#, Shiyu Zhu#, Lingyuan Kong#, Guangwei Wang, Michal Papaj, Peng Zhang, Yabin Liu, Hui Chen, Geng Li, Fazhi Yang, Takeshi Kondo, Shixuan Du, Guanghan Cao, Shik Shin, Liang Fu, Zhiping Yin, Hong-Jun Gao*, Hong Ding*. A new Majorana platform in an Fe-As bilayer superconductor. Nature Communications 11, 5688 (2020). [Progress]
[11]Shiyu Zhu#, Yan Shao#, En Wang#, Lu Cao, Xuanyi Li, Zhongliu Liu, Chen Liu, Liwei Liu, Jiaou Wang, Kurash Ibrahim, Jiatao Sun*, Yeliang Wang*, Shixuan Du, and Hong-Jun Gao*, Evidence of topological edge states in buckled antimonene monolayers. Nano Letters 19, 6323 (2019).
[12]Jiawei Hu#, Shiyu Zhu#*, Qianying Hu#, Yunhao Wang, Chengmin Shen, Haitao Yang, Xiaoshan Zhu, Qing Huan, Yang Xu* and Hong-Jun Gao*. Visualizing the Local Twist Angle Variation within and between Domains of Twisted Bilayer Graphene. Chinese Physics Letters 41, 037401 (2024). (Cover Story) (Express Letter) [Physics word] [Perspective]
[13]Lulu Pan#, Yunhao Wang#, Xiang Ding, Guojing Hu, Hui Guo, Senhao Lv, Guoyu Xian, Qi Qi, Ke Zhu, Yechao Han, Minyinan Lei, Zhuolin Li, Lihong Bao, Ying Zhang, Xiao Lin, Shiyu Zhu*, Rui Peng, Haitao Yang* and Hong-Jun Gao. Magnetic field-induced topological phase transition for colossal negative magnetoresistance in EuB6. Applied Physics Letters 125, 243101 (2024).
[14]Runnong Zhou#, Shiyu Zhu#*, Jiawei Hu, Jianfeng Guo, Zhang Zhou, Yunhao Wang, Zhihai Cheng, Chengmin Shen, Haitao Yang and Hong-Jun Gao. Synchronous multi-technique scanning mode for probing spatially distributed quantum Hall effect in graphene. Quantum Frontiers 4, 15 (2025).
# Equal contribution authors
* Corresponding authors
目前的研究课题及展望:
极低温矢量磁场扫描探针表征(mK):STM、sMIM、MFM
新型低维信息材料精准制备与物性表征(4K):MBE+Gating STM
培养研究生情况:
招收博士生
其他联系方式:
Google Scholar:https://scholar.google.com/citations?user=cJRBOswAAAAJ&hl=zh-CN
研究团队:https://n04.iphy.ac.cn/
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