杭州师范大学理学院导师:曹超

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杭州师范大学理学院导师:曹超

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杭州师范大学理学院导师:曹超 正文


姓名: 曹超 CAO Chao
性别:男 Male
联系方式:ccao@hznu.edu.cn;+8657128860503 ext 803
职称:教授 Professor

研究领域:
凝聚态物理 第一性原理模拟
Condensed matter physics, first principles modeling

个人简历:
1999.9–2003.7 上海复旦大学物理系理科基地班 学士
2003.8–2008.12 美国佛罗里达大学物理系 硕士、博士
2009.1–2010.2 美国佛罗里达大学物理系 博士后
2010.3–今 杭州师范大学理学院 校聘教授

1999.9–2003.7 B. S. from Dept. of Physics, Fudan University
2003.8–2008.12 M. S. & Ph. D. from Dept. of Physics, Univ. of Florida
2009.1–2010.2 Postdoc. researcher at Dept. of Physics, Univ. of Florida
2010.3–Current, Professor of Physics, Hangzhou Normal University

教学情况:
本科课程:基础物理学(双语)
研究生:凝聚态物理前沿专题讲座(召集)

Undergraduate Course: Fundamental Physics (bi-lingual)
Graduate Course: Frontier of Condensed Matter Physics (in charge)

科研情况:
主要研究方向为对关联体系、铁基超导体的第一性原理研究和低维系统的输运过程。迄今在PRL、PRB、APL等杂志发表SCI论文28篇,被引用380余次。曾获2008年国家优秀自费留学生奖学金,2009年美国物理学Nicholas Metropolis大奖。主持国家自然科学基金青年科学基金项目一项,参与国家自然科学基金重点项目一项,并获得2012年浙江省自然科学基金杰出青年科学基金。

主要代表论文:
1.Chao Cao and Jianhui Dai, Block Spin Ground State and Three-Dimensionality of (K,Tl)yFe1:6Se2, Physical Review Letters 107, 056401 (2011)
2.Chao Cao, S. Hill and Hai-Ping Cheng, Strongly correlated electrons in the [Ni(hmp)(ROH)X]4 single molecule magnet: A DFT+U study, Physical Review Letters 100, 167206 (2008)
3.Chao Cao and Jianhui Dai, Electronic structure and Mott localization of iron-deficient TlFe1:5Se2 with superstructures, Physical Review B 83, 193104 (2011)
4.Chao Cao and Jianhui Dai, Electronic Structure of KFe2Se2 from First-Principles Calculations, Chinese Physics Letters 28, 057402 (2011)
5.Chao Cao, Min Wu, J. Z. Jiang, et al, Transition metal adatom and dimer adsorbed on graphene: Induced magnetization and electronic structures, Physical Review B 81 205424 (2010) (cited 20 times)
6.A. F. Kemper, Chao Cao, P. J. Hirschfeld, et al, Effects of cobalt doping and three-dimensionality in BaFe2As2, Physical Review B 80, 104511 (2009)
7.Chao Cao, P. J. Hirschfeld and Hai-Ping Cheng, Proximity of antiferromagnetism and super-conductivity in LaFeAsO1-xFx: Effective Hamiltonian from ab initio studies, Physical Review B 77, 220506 (2008) (cited >150 times)

My primary research interest is the first principles study of correlated systems and iron-based superconductors, as well as transport phenomena in low-dimensional systems. Currently, I am interested in the frustrated magnetism in iron-pnictides/chalcogenides, and realistic modeling of correlated system (i.e, LDA+DMFT).
SELECTED PUBLICATIONS (within 2 yrs):
1.Chao Cao, Yan Wang, Hai-Ping Cheng and J.-Z. Jiang, Perfect spin-filtering and giant magnetoresistance with Fe-terminated graphene nanoribbon, Applied Physics Letters 99, 073110 (2011)
2.Chao Cao and Jianhui Dai, Block Spin Ground State and Three-Dimensionality of (K,Tl)yFe1:6Se2, Physical Review Letters 107, 056401 (2011)
3.Hua Chen, Chao Cao and Jianhui Dai, Block spin magnetism and metal-insulator transition in a two-dimensional Hubbard model with perfect vacancy superstructure, Physical Review B 83, 180413 (2011)
4.Chao Cao and Jianhui Dai, Electronic structure and Mott localization of iron-deficient TlFe1:5Se2 with superstructures, Physical Review B 83, 193104 (2011)
5.Chao Cao and Jianhui Dai, Electronic Structure of KFe2Se2 from First-Principles Calculations, Chinese Physics Letters 28, 057402 (2011)
6.Chao Cao, Yuning Wu, R. Hamdan, et al, Accurate projected augmented wave datasets for BaFe2As2, New Journal of Physics 12, 123029 (2010)
7.Min Wu, Chao Cao and J.-Z. Jiang, Electronic structure of substitutionally Mn-doped graphene, New Journal of Physics 12, 063020 (2010)
8.MinWu, Chao Cao and J.-Z. Jiang, Light non-metallic atom (B, N, O and F)-doped graphene: a first-principles study, Nanotechnology 21, 505202 (2010)
9.J. L. Palma, Chao Cao, X.-G. Zhang, et al, Manipulating I-V Characteristics of a Molecular Switch with Chemical Modi_cations, Journal of Physical Chemistry C 114, 1655-1662 (2010)
10.YanWang, Chao Cao and Hai-Ping Cheng, Metal-terminated graphene nanoribbons, Physical Review B 82, 205429 (2010)
11.Chao Cao, Min Wu, J. Z. Jiang, et al, Transition metal adatom and dimer adsorbed on graphene: Induced magnetization and electronic structures, Physical Review B 81 205424 (2010) (cited 14 times)

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