杨柯

发布者:周春宇发布时间:2021-06-07浏览次数:10

杨柯

职称:讲师

2020年复旦大学博士

电话:17602119227

Email: keyang@usst.edu.cn


个人简介:

主要从事计算凝聚态物理和计算材料科学的研究,在二维磁性材料的磁各向异性能、关联氧化物电子结构和磁性方面有着丰富的研究经验。研究工作主要包括磁性原子的磁晶各向异性能分析、高温的铁磁绝缘体、磁性氧化物材料电荷自旋态、自旋轨道耦合等。

主要经历:

2020-12~至今  上海理工大学,理学院,讲师

2015-09~2020-11 复旦大学,理论物理,博士

2011-09~2015-07 湘潭大学,物理学专业,学士


研究兴趣:

Strongly correlated transition metal oxides (强关联过渡金属氧化物)Two-dimensional (2D) magnetic materials (二维磁性材料)Orbital physics, lattice-charge-orbital-spin coupling (轨道物理,晶格-电荷-轨道-自旋耦合)Magneto-optical Kerr effect (MOKE) (磁光克尔效应)

代表性工作:

  1. Ke Yang, D. I. Khomskii, and Hua Wu*, Unusual layered order and charge disproportionation in the double-perovskite compound Ca2FeMnO6, Phys. Rev. B 98, 085105 (2018).

  2. Ke Yang#, F. R. Fan#, A. Stroppa, and Hua Wu*, Possible high-TC layered ferromagnetic insulator Sr2NiRuO4: an ab initio study, J. Phys. Chem. C 122, 25589 (2018).

  3. Ke Yang, F. R. Fan, H. Wang, D. I. Khomskii, and Hua Wu*VI3: A two-dimensional Ising ferromagnet, Phys. Rev. B (Rapid Commun.) 101, 100402(R) (2020).

  4. Ke Yang, W. Hu, Hua Wu*, M.H. Whangbo, P. G. Radaelli, and A. Stroppa*, Magneto-optical Kerr switching properties of (CrI3)2 and (CrBr3/CrI3) bilayers, ACS Appl. Electron. Mater. 2, 1373 (2020).

  5. S. Liu#, Ke Yang#, W. Liu#, E. Zhang, Z. Li, X. Zhang, Z. Liao, W. Zhang, J. Sun, Y. Yang, H. Gao, C. Huang, L. Ai, P. K. J. Wong, A. T. S. Wee, A. T. NDiaye, S. A. Morton, X. Kou, J. Zou, Y. Xu, Hua Wu*, and F. Xiu*, Two-dimensional ferromagnetic superlattices, Natl. Sci. Rev. 7, 745 (2020).

  6. T. Li#, F. Hong#, Ke Yang#, B. Yue, N. Tamura, Hua Wu*, Z. Cheng*, C. Wang*, Metastable oxygen vacancy ordering state and improved memristive behavior in TiO2 crystals, Sci. Bull. 65, 631 (2020).

  7. L. Liu, Ke Yang, G. Wang, Hua Wu*, Two-dimensional ferromagnetic semiconductor VBr3 with tunable anisotropy, J. Mater. Chem. C 8, 14782 (2020).

  8. W. Hu, Ke Yang, A. Stroppa*, A. Continenzad and Hua Wu*, 2D hybrid CrCl2(N2C4H4)2 with tunable ferromagnetic half-metallicity, J. Mater. Chem. C 9,  5985 (2021).

 

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