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个人简介

教育经历 2008年9月---2012年7月 中国科学院物理研究所获得理学博士学位 工作经历 2012年8月---2014年7月 瑞士日内瓦大学凝聚态物理系 博士后 2014年8月---2015年10月 日本大阪大学产业科学与技术研究所 博士后 2015年10月---2019年2月 德国科隆大学物理II系 博士后 2019年3月---至今 北京理工大学物理学院,特别研究员、博士生导师 科研项目 新型拓扑量子材料的探索和可控制备,国家自然科学基金重大研究计划培育项目,80万,主持(2021.01-2023.12) 新型低维量子功能材料的可控制备和表征,北京市自然科学基金重点研究专题(子课题),130万,主持(2021.08-2025.08) 低维自旋量子功能材料及其超快调控,国家重点研发计划,参与(2020.11-2025.10) 关联拓扑物态理论、材料和低能激发研究,国家重点研发计划,参与(2022.12-2027.11) 纳米尺度新奇拓扑物性测量及机理,北京市自然科学基金重点研究专题(子课题),参与(2019.10-2023.10) 拓扑绝缘体材料的性能调控, 北京理工大学青年教师学术启动项目,60万,主持(2019.03-2022.03)(已结题)

研究领域

(1)量子材料的晶体生长和新材料探索。主要包括拓扑材料、非常规超导体、二维材料、热电材料、光电材料等等。利用熔融法、助溶剂法、化学气相输运法、布里奇曼法、电化学法等单晶制备方法合成高质量的单晶材料,并利用XRD、SEM、EDX、TEM、ICP、XPS等技术手段对材料进行基本表征 (2)材料的物理性质以及物性与结构、微结构相关联研究。利用PPMS、MPMS等设备研究材料的电学、磁学、热力学等性质。并结合XRD和TEM研究技术研究材料物理性质和结构、微结构之间的关联 (3)纳米材料的生长和基本表征。利用VLS法、气相输运法、气相反应法等生长技术合成拓扑材料纳米线、纳米柱、纳米片等纳米材料。并用XRD、SEM、TEM等研究技术对纳米材料进行表征 (4)合作研究。为国内外知名课题组提供高质量样品,开展合作研究,主要包括ARPES、STM、光谱、结构与微结构、器件微纳加工与应用、电学性质、热力学性质等等

近期论文

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Nodeless electron pairing in CsV3Sb5-derived kagome superconductors. Yigui Zhong#, Jinjin Liu#, Xianxin Wu#, Zurab Guguchia, J.-X. Yin, Akifumi Mine, Yongkai Li, Sahand Najafzadeh, Debarchan Das, Charles Mielke III, Rustem Khasanov, Hubertus Luetkens, Takeshi Suzuki, Kecheng Liu, Xinloong Han, Takeshi Kondo, Jiangping Hu, Shik Shin, Zhiwei Wang*, Xun Shi*, Yugui Yao and Kozo Okazaki*. Nature (online). Effects of niobium doping on the charge density wave and electronic correlations in the kagome metal Cs(V1?xNbx)3Sb5. Xiaoxiang Zhou#, Yongkai Li#, Zhe Liu#, Jiahao Hao, Yaomin Dai*, Zhiwei Wang*, Yugui Yao, and Hai-Hu Wen*. Phys. Rev. B 107 (2023) 125124. Evidence of a room-temperature quantum spin Hall edge state in a higher-order topological insulator. Nana Shumiya#, Md Shafayat Hossain#*, Jia-Xin Yin*, Zhiwei Wang#, Maksim Litskevich#, Chiho Yoon#, Yongkai Li, Ying Yang, Yu-Xiao Jiang, Guangming Cheng, Yen-Chuan Lin, Qi Zhang, Zi-Jia Cheng, Tyler A. Cochran, Daniel Multer, Xian P. Yang, Brian Casas, Tay-Rong Chang, Titus Neupert, Zhujun Yuan, Shuang Jia, Hsin Lin, Nan Yao, Luis Balicas, Fan Zhang, Yugui Yao and M. Zahid Hasan*. Nature Materials 21, (2022) 1111. Fermiology and Origin of Tc Enhancement in a Kagome Superconductor Cs(V1 ? xNbx)3Sb5. Takemi Kato#, Yongkai Li#, Kosuke Nakayama*, Zhiwei Wang*, Seigo Souma, Fumihiko Matsui, Miho Kitamura, Koji Horiba, Hiroshi Kumigashira, Takashi Takahashi, Yugui Yao, and Takafumi Sato*. Physical Review Letters 129 (2022) 206402. Carrier Injection and Manipulation of Charge-Density Wave in Kagome Superconductor CsV3Sb5. Kosuke Nakayama#,* Yongkai L# Takemi Kato, Min Liu, Zhiwei Wang*, Takashi Takahashi, Yugui Yao, and Takafumi Sato*. Physical Review X 12 (2022) 011001. Yongkai Li#, Qing Li#, Xinwei Fan#, Jinjin Liu, Qi Feng, Min Liu, Chunlei Wang, Junxi Dua, Xiang Li, Zhiwei Wang*, Hai-Hu Wen*, Yugui Yao*. Tuning the competition of superconductivity and charge density wave order in kagome metal Cs(V1-xNbx)3Sb5. Phys. Rev. B 105 (2022) L180507. Electron-phonon coupling in the charge density wave state of CsV3Sb5. Yaofeng Xie#, Yongkai#, Philippe Bourges*, Alexandre Ivanov, Zijin Ye, Jia-Xin Yin, M. Zahid Hasan, Aiyun Luo, Yugui Yao, Zhiwei Wang*, Gang Xu*, and Pengcheng Dai*. Physical Review B 105 (2022) L140501 (Editors’ Suggestion). Polarity-dependent charge density wave in the kagome superconductor CsV3Sb5. Takemi Kato#, Yongkai Li#, Kosuke Nakayama*, Zhiwei Wang*, Seigo Souma, Miho Kitamura, Koji Horiba, Hiroshi Kumigashira, Takashi Takahashi, and Takafumi Sato*. Physical Review B 106 (2022) L121112. Strong-coupling superconductivity and weak vortex pinning in Ta-doped CsV3Sb5 single crystals Jinyulin Li, Wei Xie, Jinjin Liu, Qing Li, Xiang Li, Huan Yang*, Zhiwei Wang*, Yugui Yao, and Hai-Hu Wen*. Physical Review B 106 (2022) 214529. Pressure-induced superconductivity extending across the topological phase transition in thallium-based topological materials. Cuiying Pei#, Peihao Huang#, Peng Zhu#, Linlin Liu, Qi Wang, Yi Zhao, Lingling Gao, Changhua Li, Weizheng Cao, Jian Lv, Xiang Li, Zhiwei Wang*, Yugui Yao, Binghai Yan*, Claudia Felser, Yulin Chen, Hanyu Liu*, and Yanpeng Qi*. Cell Reports Physical Science 3, 101094, (2022). Three-dimensional energy gap and origin of charge-density wave in kagome superconductor KV3Sb5. Takemi Kato#, Yongkai Li#, Tappei Kawakami#, Min Liu#, Kosuke Nakayama*, Zhiwei Wang*, Ayumi Moriya, Kiyohisa Tanaka, Takashi Takahashi, Yugui Yao and Takafumi Sato*. Communications Materials 3 (2022) 30. Crystal Growth and Characterization of ZrSiS-Type Topological Dirac Semimetals. Ying Yang, Peng Zhu, Liu Yang, Jinjin Liu, Yongkai Li and Zhiwei Wang*. Crystal, 12 (2022) 728. Twofold symmetry of c-axis resistivity in topological kagome superconductor CsV3Sb5 with in-plane rotating magnetic field. Ying Xiang#, Qing Li#, Yongkai Li#, Wei Xie, Huan Yang*, Zhiwei Wang*, Yugui Yao, and Hai-Hu Wen*. Nature Communications 12 (2021) 6727. Electronic nature of chiral charge order in the kagome superconductor CsV3Sb5. Zhiwei Wang#, Yu-Xiao Jiang#, Jia-Xin Yin#*, Yongkai Li#, Guan-Yong Wang, Hai-Li Huang, Shen Shao, Jinjin Liu, Peng Zhu, Nana Shumiya, Md Shafayat Hossain, Hongxiong Liu, Youguo Shi, Junxi Duan, Xiang Li, Guoqing Chang, Pengcheng Dai, Zijin Ye, Gang Xu, Yanchao Wang, Hao Zheng, Jinfeng Jia, M. Zahid Hasan*, and Yugui Yao*. Physical Review B 104, (2021) 075148. (Editors’ Suggestion) Multiple energy scales and anisotropic energy gap in the charge-density-wave phase of the kagome superconductor CsV3Sb5. Kosuke Nakayama#*, Yongkai Li#, Takemi Kato, Min Liu, Zhiwei Wang*, Takashi Takahashi, Yugui Yao, and Takafumi Sato*. Physical Review B 104, (2021) L161112. Classical linear magnetoresistance in exfoliated NbTe2 nanoflakes. Siyao Gu, Kaixuan Fan, Yang Yang, Hong Wang, Yongkai Li, Fanming Qu, Guangtong Liu, Zi-an Li, Zhiwei Wang*, Yugui Yao, Jianqi Li, Li Lu, and Fan Yang*. Physical Review B 104, (2021) 115203. Synthesis of Superconducting InxSn1-xTe (0.04 < x < 0.1) Large Single Crystal by Liquid Transport Method. Peng Zhu, Yongkai Li, Xiaohui Yang, Ying Yang, Xin Zhang, Xiao Lin, Fan Yang, Xiang Li and Zhiwei Wang*. Crystal, 11 (2021) 474. Origin of charge density wave in the kagome metal CsV3Sb5 as revealed by optical spectroscopy. Xiaoxiang Zhou#, Yongkai Li#, Xinwei Fan#, Jiahao Hao, Yaomin Dai*, Zhiwei Wang*, Yugui Yao and Hai-Hu Wen*. Physical Review B 104 (2021) L041101 (Editors’ Suggestion). Infrared study of the multiband low-energy excitations of the topological antiferromagnet MnBi2Te4. Bing Xu, Y Zhang, E. H. Alizade, Z. A. Jahangirli, F. Lyzwa, E. Sheveleva, P. Marsik, Y. K. Li, Y. G. Yao, Z. W. Wang*, B. Shen*, Y. M. Dai, V. Kataev, M. M. Otrokov, E. V. Chulkov, N. T. Mamedov*, and C. Bernhard*. Physical Review B 103 (2021) L121103. Generalized Anderson’s theorem for superconductors derived from topological insulators. Lionel Andersen, Aline Ramires, Zhiwei Wang, Thomas Lorenz, Yoichi Ando. Sci. Adv. 6 (2020) eaay6502. Uniaxial-strain control of nematic superconductivity in SrxBi2Se3. Ivan Kostylev, Shingo Yonezawa, Zhiwei Wang, Yoichi Ando and Yoshiteru Maeno. Nature Communications, 11 (2020) 4152. Observation of Chiral Fermions with a Large Topological Charge and Associated Fermi-Arc Surface States in CoSi. Daichi Takane, Zhiwei Wang, Seigo Souma, Kosuke Nakayama, Takechika Nakamura, Hikaru Oinuma, Yuki Nakata, Hideaki Iwasawa, Cephise Cacho, Timur Kim, Koji Horiba, Hiroshi Kumigashira, Takashi Takahashi, Yoichi Ando, and Takafumi Sato, Phys. Rev. Lett. 122 (2019) 076402. (Featured in Physics, Editors’ Suggestion) Direct Visualization of the Nematic Superconductivity in CuxBi2Se3.Ran Tao, Ya-Jun Yan, Xi Liu, Zhi-Wei Wang, Yoichi Ando, Qiang-Hua Wang, Tong Zhang, and Dong-Lai Feng. Phys. Rev. X 8 (2018) 041024. Anomalous Fraunhofer Patterns in Gated Josephson Junctions Based on the Bulk-Insulating Topological Insulator BiSbTeSe2. Subhamoy Ghatak, Oliver Breunig, Fan Yang, Zhiwei Wang, Alexey A. Taskin, and Yoichi Ando. Nano Lett. 18 (8) 5124–5131 (2018) Thermodynamic evidence for nematic superconductivity in CuxBi2Se3. S. Yonezawa, K. Tajiri, S. Nakata, Y. Nagai, Zhiwei Wang, K. Segawa, Yoichi Ando and Y. Maeno. Nature Physics 13, (2017) 123–126 Gigantic negative magnetoresistance in a disordered topological insulator. O. Breunig#, Zhiwei Wang#, A. Taskin, Jonathan Lux, Achim. Rosch, and Y. Ando, Nature Communications, 8 (2017) 15545.

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