Spintronics, magnonics
Physics, Optical Engineering
Dr. Lichuan Zhang earned his B.S. degree in 2013 from Tianjin University of Technology, his M.Sc. degree in 2017 from the University of Chinese Academy of Sciences, and his Ph.D. in 2022 from RWTH Aachen University. He is currently a qualified professor in the Department of Physics and Electronic Engineering at Jiangsu University.
Quantum Physics (undergraduate)
Experiment of college physics (undergraduate)
Solid State Physics (graduate)
1. The National Natural Science Foundation of China (1240041438, 12347156)
2. The Natural Science Foundation of Jiangsu Province ( BK20230516)
3. China Postdoctoral Science Foundation (2024M761185)
4. The Scientific Research Startup of Jiangsu University (5501710001).
For more details please see:https://orcid.org/0000-0002-8399-2409
10 representative papers:
Magnonics:
1. Yingxi Bai, Lichuan Zhang*, Ning Mao, Runhan Li, Zhiqi Chen, Ying Dai*, Baibiao Huang, and Chengwang Niu*,Coupled Electronic and Magnonic Topological States in Two-Dimensional Ferromagnets, ACS Nano, 18, 13377–13383 (2024).
2. Fengfeng Zhu#, Li-chuan Zhang#, Yao Wang#, Flaviano José dos Santos, Junda Song, Thomas Mueller, Karin Schmalzl, Wolfgang F. Schmidt, Alexandre Ivanov, Jitae T. Park, Jianhui Xu, Jie Ma, Samir Lounis, Stefan Blügel, Yuriy Mokrousov, Yixi Su and Thomas Brückel, Topological magnon insulators in two-dimensional van der Waals ferromagnets CrSiTe3 and CrGeTe3: towards intrinsic gap-tunability. Science Advance 7(37), eabi7532, (2021).
3. Li-chuan Zhang*, Fengfeng Zhu, Dongwook, Go, Fabian R Lux, Flaviano José dos Santos, Samir Lounis, Yixi Su, Stefan Blügel and Yuriy Mokrousov*. The interplay of Dzyaloshinskii-Moriya and Kitaev interactions for magnonic properties of Heisenberg-Kitaev honeycomb ferromagnets. Physical Review B 103(13), 134414 (2021)
4. Li-chuan Zhang, Dongwook Go, Fabian R Lux, Jan-Philipp Hanke, Patrick M Buhl, Sergii Grytsiuk, Stefan Blügel and Yuriy Mokrousov. Imprinting and driving electronic orbital magnetism by magnons. Communications Physics 3(1), 227 (2020).
5. Li-chuan Zhang, Y.A. Onykiienko, P.M. Buhl, Y.V. Tymoshenko, P. Čermák, A. Schneidewind, A. Henschel, M Schmidt, S. Blügel, D.S. Inosov and Y. Mokrousov. Magnonic Weyl states in Cu2OSeO3. Physical Review Research 2(1), 013063 (2020).
Spintronics:
6. Zhidong Li, Ruifu Zhang, Jun Shan, Laith Alahmed, Ailing Xu, Yuanping Chen, Jiaren Yuan, Xiaomin Cheng*, Xiangshui Miao, Jiajia Wen*, Yuriy Mokrousov, Young S. Lee, Lichuan Zhang*, and Peng Li*,
Electrostatic Gating of Spin Dynamics of a Quasi-2D Kagome Magnet, Nano Letters, 24, 2415–2420 (2024).
7. Li-chuan Zhang#, Lizhi Zhang#, Guangzhao Qin, Qing-Rong Zheng, Ming Hu*, Qing-Bo Yan* and Gang Su*, Two-dimensional Magnetic Metal-Organic Frameworks with Shastry-Sutherland Lattice, Chemical Science 10(44), 10381-10387 (2019).
8. Jinhui Xing, Chao Wu, Shiqi Li, Yuanping Chen, Lizhi Zhang, Yuee Xie*, Jiaren Yuan*, Lichuan Zhang*, Physical Chemistry Chemical Physics, Spin Hall effect modulated by an electric field in asymmetric two-dimensional MoSiAs2Se, 21, (2024).
9. Chao Wu, Li-chuan Zhang*, Lin Xia, Dong Hao, Shiqi Li, Lizhi Zhang, Yuee Xie* and Yuanping Chen, Highly anisotropic Dirac Fermion and spin transport properties in Cu-graphane, Chinese Physical B, 32 087104 (2023)