陆成亮
教授
个人简介
陆成亮,中共党员,2003年湖北大学物理系学士,2006年武汉大学物理系硕士,2009年南京大学物理系博士。2009-2010年,南洋理工大学物理系/材料系博士后,2010年8月入职华中科技大学物理学院。2013-2015年,德国马普微结构物理研究所洪堡学者。2015年12月获湖北省“楚天学子”称号。
研究领域
主要研究方向为关联电子材料物理,包括多铁性氧化物、5d铱氧化物。
近期论文
1.C. L. Lu, H. Deniz, X. Li, J.-M. Liu, and S-W Cheong, Continuous magnetoelectric control in multiferroic DyMnO3 films with twin-like domains. Sci. Rep. 6, 20175 (2016) 2.N. Hu, C. L. Lu*, Z. C. Xia, R. Xiong, P. F. Fang, J. Shi, and J. –M. Liu, Multiferroicity and magnetoelectric coupling in TbMnO3 thin films, ACS Appl. Mater. & Interfaces 7, 26603 (2015). 3.C. L. Lu, W. J. Hu, Y. F. Tian, and T. Wu, Multiferroic oxide thin films and heterostructures, Appl. Phys. Rev. 2, 021304 (2015). 4.C. L. Lu, S. Dong, A. Quindeau, D. Preziosi, N. Hu, and M. Alexe, Dual gate control of bulk transport and magnetism in the spin-orbit insulator Sr2IrO4, Phys. Rev. B 91, 104401 (2015). 5.X. Li, C. L. Lu*, J. Y. Dai, S. Dong, Y. Chen, N. Hu, G. H. Wu, M. F. Liu, Z. B. Yan, and J. –M. Liu, Novel multiferroicity in GdMnO3 thin films with self-assembled nano-twined domains. Sci. Rep. 4, 7019 (2014). 6.C. L. Lu, A. Quindeau, H. Deniz, D. Preziosi, D. Hesse, and M. Alexe, Crossover of conduction mechanism in Sr2IrO4 epitaxial thin films. Appl. Phys. Lett. 105, 082407 (2014). 7.C. L. Lu, N. Hu, M. Yang, S. C. Xia, H. W. Wang, J. F. Wang, Z. C. Xia, and J. –M. Liu, High magnetic field phase diagram in electron-doped manganites La0.4Ca0.6Mn1-yCryO3. Sci. Rep. 4, 4902 (2014). 8.C. L. Lu, S. Dong, Z. C. Xia, H. Luo, Z. B. Yan, H. W. Wang, Z. M. Tian, S. L. Yuan, T. Wu, and J. –M. Liu, Polarization enhancement and ferroelectric switching enabled by interacting magnetic structures in DyMnO3 thin films. Sci. Rep. 3, 3374 (2013). 9.C. L. Lu, J.-M. Liu, and T. Wu, Electric field driven phase transition and possible twinning quasi-tetragonal phase in compressively strained BiFeO3 thin films. Front. Phys. 7, 424 (2012). 10.C. L. Lu, Y. Y. Wu, Z. C. Xia, S. L. Yuan, L. Chen, Z. M. Tian, J. –M. Liu, and T. Wu, Giant in-plane anisotropy in manganite thin films driven by strain-engineered double exchange interaction and electronic phase separation. Appl. Phys. Lett. 99, 122510 (2011). 11.C-J Cheng, C. L. Lu, Z. H. Chen, L. You, L. Chen, J. L. Wang, and T. Wu, Thickness-dependent