谢弘超 Xie Hongchao
钱崇斌 2021-03-16 16902

基本信息

职称:教授、博导、硕导
Title:Professor, Doctoral & Graduate Supervisor, Spin-X Institute & School of Microelectronics

联系方式:hcxie@scut.edu.cn  

招生专业

个人简介

谢弘超,海外高层次引进人才,2019年8月于美国宾夕法尼亚州立大学获得博士学位,随后在美国密西根大学从事博士后研究工作,2022年10月加入华南理工大学,担任准聘教授。主要研究方向为:(1)二维磁性及其在纳机电系统的应用;(2)二维莫尔超晶格与器件系统;(3)二维转角多层体系的关联电子量子物质态。在二维自旋、谷赝自旋激子的样品制备、物态表征及调控方面取得系列创新成果。以第一作者(含共一)身份在Nature Physics, Nature Materials和Nano Letters等国际知名期刊上发表研究工作,共计发表SCI论文十余篇。

Dr. Hongchao Xie got his Ph.D. degree from The Pennsylvania State University in August 2019, and then worked in The University of Michigan, Ann Arbor for three years as a postdoctoral research fellow. Dr. Xie has joined South China University of Technology as a tenured track associate professor since October 2022. His research interest mainly lies in experimentally exploring (1) 2D magnetism and its applications on nanoelectromechanical systems (NEMS), (2) 2D moiré superlattices and device systems, (3) 2D twist multilayer systems and their electronic/magnetic states of matter. He has realized series of remarkable progress in developing twist and suspended devices of 2D spin, 2D exciton with valley pseudo-spin and the characterization and control on quantum states of matter. He has published research work as first (co-first) author in high-profile journals such as Nature Physics, Nature Materials and Nano Letters, with more than 10 SCI papers peer-reviewed in total.

教育经历

2014-08至2019-08,美国宾夕法尼亚州立大学,凝聚态物理,博士

2017-12至2019-08,美国康奈尔大学,凝聚态物理,联培博士生

2012-09至2014-06,英国曼彻斯特大学,物理学,硕士

2009-09至2013-06,山东大学,物理学,学士

工作经历

2022-10至今,华南理工大学自旋科技研究院/微电子学院,准聘教授

2019-09至2022-08,美国密西根大学物理系,博士后研究员

研究方向

二维磁性及其在纳机电系统的应用、二维莫尔超晶格与器件系统、二维转角多层体系关联物态

授课课程

电路-Electric Circuits

学术任职

担任Materials Today, npj Quantum Materials, Applied Physics Letters等学术期刊审稿人

科研项目

国家自然科学基金重大研究计划培育项目,主持,在研

国家自然科学基金青年基金(C类),主持,在研

广东省LZ战略专项重点项目,主持,在研

广东省自然科学基金面上项目,主持,在研

广州市基础与应用基础研究“领航”项目,主持,在研

代表性科研成果

Google scholar: https://scholar.google.com/citations?hl=en&user=boEq1mMAAAAJ

[1] L. Wang, D. Chu, M. Mutailipu, H. Wang, J. Lu, H. Xie, Z. Chen*, S. Pan*, J. Li*. “Lattice confinement-stabilized triple-connected Sn (II) chalcogenides for strong second-harmonic generation and broadband-tunable photoluminescence”. Advanced Functional Materials, 2025, e15259.

[2] L. Yao, H. Xie, B. Hu, S. Jiang*. “Voltage-modulated magnetodynamics in spin Hall nanooscillators”. IEEE Magnetic Letters, 2025, 16, 4500105.

[3] M. Huang#, Z. Sun#, G. Yan, H. Xie, N. Agarwal, G. Ye, S. H. Sung, H. Lu, J. Zhou, S. Yan, S. Tian, H. Lei, R. Hovden, R. He, H. Wang, L. Zhao*, C. R. Du*. “Revealing intrinsic domains and fluctuations of moiré magnetism by a wide-field quantum microscope”. Nature Communications, 2023, 14, 5259.

[4] H. Xie#, X. Luo#, Z. Ye#, Z. Sun#, G. Ye, S. H. Sung, H. Ge, S. Yan, Y. Fu, S. Tian, H. Lei, K. Sun, R. Hovden, R. He*, L. Zhao*. “Evidence of noncollinear spin texture in magnetic moiré superlattices”. Nature Physics, 2023, 19, 1150-1155.

[5] S. H. Sung, Y. M. Goh, H. Yoo, R. Engelke, H. Xie, K. Zhang, Z. Li, A. Ye, P. B. Deotare, E. B. Tadmor, A. J. Mannix, J. Park, L. Zhao, P. Kim, R. Hovden*. “Torsional periodic lattice distortions and diffraction of twisted 2D materials”. Nature Communications, 2022, 13, 7826.

[6] W. Liu#, X. Guo#, J. Schwartz, H. Xie, N. Dhale, S. H. Sung, A. L. N. Kondusamy, X. Wang, H. Zhao, D. Berman, R. Hovden*, L. Zhao*, B. Lv*. “A three-stage magnetic phase transition revealed in ultrahigh-quality van der Waals bulk magnet CrSBr”. ACS Nano, 2022, 16, 15917-15926.

[7] H. Xie#, X. Luo#, G. Ye#, Z. Ye, H. Ge, S. H. Sung, E. Rennich, Y. Fu, S. Yan, S. Tian, H. Lei, R. Hovden, K. Sun, R. He*, L. Zhao*. “Twist engineering of the two-dimensional magnetism in double bilayer chromium triiodide homostructures”. Nature Physics, 2022, 18, 30-36.

[8] X. Guo#, W. Jin#, Z. Ye, G. Ye, H. Xie, B. Yang, H. H. Kim, S. Yan, Y. Fu, S. Tian, H. Lei, A. W. Tsen, K. Sun, J.-A. Yan, R. He*, L. Zhao*. “Structural monoclinicity and its coupling to layered magnetism in few-layer CrI3”. ACS Nano, 2021, 15,10444-10450.

[9] H. Xie, S. Jiang, D. A. Rhodes, J. C. Hone, J. Shan*, K. F. Mak*. “Tunable exciton-optomechanical coupling in suspended monolayer MoSe2”. Nano Letters, 2021, 21, 2538-2543.

[10] Z. Li, X. Lu, D. F. C. Leon, Z. Lyu, H. Xie, J. Hou, Y. Lu, X. Guo, A. Kaczmarek, T. Taniguchi, K. Watanabe, L. Zhao, L. Yang, P. B. Deotare*. “Interlayer exciton transport in MoSe2/WSe2 heterostructures”. ACS Nano, 2021, 15, 1539-1547.

[11] S. Jiang#, H. Xie#, J. Shan*, K. F. Mak*. “Exchange magnetostriction in two-dimensional antiferromagnets”. Nature Materials, 2020, 19, 1295-1299.

[12] G. M. Stiehl, R. Li, V. Gupta, I. El Baggari, S. Jiang, H. Xie, L. F. Kourkoutis, K. F. Mak, J. Shan, R. A. Buhrman, D. C. Ralph*. “Layer-dependent spin-orbit torques generated by the centrosymmetric transition metal dichalcogenide β-MoTe2”. Physical Review B, 2019, 100, 184402.

[13] H. Xie, S. Jiang, J. Shan*, K. F. Mak*. “Valley-selective exciton bistability in a suspended monolayer semiconductor”. Nano Letters, 2018, 18, 3213-3220.

[14] J. Lee, Z. Wang, H. Xie, K. F. Mak*, J. Shan*. “Valley magnetoelectricity in single-layer MoS2”. Nature Materials, 2017, 16, 887-891.