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校级精品课程-电动力学

  

 

 校级精品课程-电动力学

 

课程负责人:马春兰

 

 

毕业于复旦大学,师从复旦大学王迅院士和杨中芹教授。从事计算凝聚态物理研究工作,研究材料的电磁性质、纳米结构的电子输运性质。曾于意大利国家材料物理研究所(CNR-INFM)交流访问,并于台湾‘国立交通大学’做博士后。近年来发表科研论文(SCI收录)如下:

142011-887
[1]. Ma Chun-Lan, Zang Tao-Cheng, Wang Xiao-Dan, ‘Hydrostatic pressure influence on magnetic phase diagram and structural parameters of SrTcO3 from first-principles calculations’, Science in China Series G: Physics, Mechanics & Astronomy, 2012, 55(7):1-5.
[2]. Chun-Lan Ma, Tong Zhou, Comparison of the structural and magnetic properties of ground-state SrTcO3 and CaTcO3 from first principles, Physica B: Physics of Condensed Matter, 2012, 407(2): P218-221.
[3]. Chun-Lan Ma, Yu-Chang Chen, Diu Nghiem, Allen Tseng, Pao-Chieh Huang, First principles study of the electron density distribution in a pair of bare metallic electrodes, Applied Physics A, 2011, 104(1): 325-328.
[4]. Chun-Lan Ma, Yan Zhu, Tao-Cheng Zang, Xiao-Dan Wang, The active role played by nonmagnetic Sr in magnetostructural coupling in SrTcO3 from first principles, Physics Letters A, 2011, 375 (41): 3615-3617.
[5]. Chun-Lan Ma, Jun Cang, First principles investigation on the band gap of the ground state of LaCoO3, Solid State Communications, 2010, 150 (41-42): 1983-1986.
[6]. Chun-Lan Ma, Xiao-Dan Wang, Xiao-Hui Song, Xiang Hao, Effect of orthorhombic distortion and electron correlation on the electronic structure of SrMnO3 from first principles, Physics Letters A, 2010, 374(23):2388-2391.
[7]. Jian Ni, Chun-Lan Ma*, A probable mechanism of spin-state transition in LaCoO3, Modern Physics Letters B, 2010, 24 (16):1785-1790.
[8]. Chun-Lan Ma, Diu Nghiem, and Yu-Chang Chen, “Alkanethiol-based single-molecule transistors”, Applied Physics Letters, 2008, 93(22):222111. 
[9]. Chun-Lan Ma, Silvia Picozzi, Xun Wang, and Zhong-Qin Yang, “First principles study of the electronic structures of erbium silicides with non-frozen 4f treatment”, European Physical Journal B, 2007, 59(3):297-303.
[10]. Silvia Picozzi, Chun-Lan Ma, Zhong-Qin Yang, R. Bertacco, M. Cantoni, A. Cattoni, D. Petti, S. Brivio, and F. Ciccacci, “Oxygen vacancies and induced changes in the electronic and magnetic structures of La0.66Sr0.33MnO3: A combined ab initio and photoemission study”, Physical Review B, 2007, 75(9):094418.  
[11]. Chun-Lan Ma, Zhong-Qin Yang and Silvia Picozzi, “Ab initio electronic and magnetic structure in La0.66Sr0.33MnO3: strain and correlation effects”, Journal of Physics: Condensed Matter, 2006, 18(32):7717-7728.          
[12]. Chun-Lan Ma*, Tao Pan, “Electronic Structures of the Filled Tetrahedral Semiconductor Li3AlN2”, Chinese Physics Letters, 2006, 23(1):186-188.              
[13]. Chun-Lan Ma, Ling Ye, and Zhong-Qin Yang, “Electronic structures of perovskite BaTbO3 studied by LSDA+U method”, Journal of Physics: Condensed Matter, 2005, 17(50):7963-7969. 
[14]. Xiang Hao, Chun-Lan Ma, and Jin-Qiao Sha, Decoherence of quantum discord in an asymmetric-anisotropy spin system, Journal of Physics A-Mathematical and Theoretical, 2010, 43(42):425302. 

[15]. Y. Zhu, C.L. Du, D.N. Shi, K.C. Zhang, C.L. Ma, S.J. Gong , and Z.Q.Yang, “Magnetism induced by boron impurities in amorphous silicon”, Journal of applied physics, 2011, 109 (7): 073913. 

主讲教师

马春兰、徐国定、沈娇艳

先修课程高等数学、电磁学、数学物理方法

基本目的

1. 学习处理电磁问题的一般理论和方法

2. 学习狭义相对论的理论、方法和应用

内容提要

1.电磁场的基本规律

2.静电问题和静磁问题

3.电磁波的辐射和传播

4.狭义相对论的概念和理论的数学形式

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