科研队伍

Team
/科研队伍/讲师

讲师

姜立伟

发布时间:2016年 04月 18日 01时 42分 编辑: 点击量:586

学科 凝聚态物理


电话 13039046989
邮箱 jlw@jlu.edu.cn
办公室 吉大南校物理楼357
实验室 吉大南校物理楼161


研究方向 石墨烯电子性质的理论研究
✈ 研究兴趣                                                                                                                                           
本人自2008年以来一直从事石墨烯电子性质的理论研究工作,共发表SCI第一作者SCI论文9篇。目前已经熟练掌握紧束缚近似方法、有效质量近似下的无质量Dirac方程方法、研究电子输运的Kubo线性响应理论和Landauer-Büttiker公式等理论工具
✈ 教育经历                                                                                                                                           
2004/09-2008/06,吉林大学,光信息科学与技术,学士
2008/09-2013/06,吉林大学,凝聚态物理,博士
✈ 工作经历                                                                                                                                            
2013/07-至今,吉林大学,物理学院,讲师
✈ 科研项目                                                                                                                                            
1、 国家自然科学基金青年基金项目,11504125,Dirac费米子材料中RKKY相互作用的理论研究,2016/01-2018/12,主持。
2、国家自然科学基金面上项目,11474122,建立适于描述二维MoS2体系电子输运性质的紧束缚模型,2015/01-2018/12,参加
✈ 科研成果                                                                                                                                            

[1]Liwei Jiang, Yisong Zheng*, Cuishan Yi, Haidong Li, and Tianquan Lü, "Analytical study of edge states in a semi-infinite graphene nanoribbon", Phys. Rev. B 80, 155454, 2009.

[2]Liwei Jiang, Yisong Zheng*, Haidong Li and Honghai Shen, "Magneto-transport properties of gapped graphene", Nanotechnology 21,145703, 2010.

[3]Liwei Jiang, Yisong Zheng*,"Remarkable enhancement of terahertz conductivity of graphene tuned by periodic gate voltage", Phys. Lett. A 375, 203-207, 2010.

[4]Liwei Jiang and Yisong Zheng*, "Magnetic miniband and magnetotransport property of a graphene superlattice", J. Appl. Phys. 109, 053701, 2011.

[5]Liwei Jiang, Xiaoling Lv, Yisong Zheng*, "Valley polarized electronic transport through a line defect in graphene: An analytical approach based on tight-binding model", Phys. Lett. A 376, 136-141, 2011.

[6]Liwei Jiang, Xiaoling Lü, Wenzhu Gao, Guodong Yu, Zhe Liu and Yisong Zheng*, "RKKY interaction in AB-stacked multilayer graphene", J. Phys.: Condens. Matter 24, 206003, 2012.

[7]Jiang Liwei, Yu Guodong, Gao Wenzhu, Liu Zhe, Zheng Yisong*, "Dirac- equation description of the electronic states of graphene with a line defect: Wave-function connection condition", Phys. Rev. B 86, 165433, 2012.

[8]Liwei Jiang, Xudong Zhao and Yisong Zheng*, "RKKY interaction in graphene with a line defect", J. Phys.: Condens. Matter 27, 046003, 2015.

[9]Xiaoling Lü, Yisong Zheng, Huanwen Xin, and Liwei Jiang, “Spin polarized electron transport through a graphene nanojunction”, Appl. Phys. Lett. 96, 132108, 2010.

[10]Lü Xiao-Ling, Liu Zhe, Yao Hai-Bo, Jiang Li-Wei, Gao Wen-Zhu, Zheng Yi-Song*, "Valley polarized electronic transmission through a line defect superlattice of graphene", Phys. Rev. B 86, 045410, 2012.

[11]Zhe Liu, Guodong Yu, Haibo Yao, Lei Liu, Liwei Jiang and Yisong Zheng*, "A simple tight-binding model for typical graphyne structures", New J Phys. 14, 113007, 2012.

[12]Guodong Yu, Xiaoling Lü, Liwei Jiang, Wenzhu Gao and Yisong Zheng*, "Structural, electronic and magnetic properties of transition-metal embedded zigzag-edged graphene nanoribbons", J. Phys. D: Appl. Phys. 46, 375303, 2013.

[13]Xiaoling Lü, Liwei Jiang, Yisong Zheng*, "Transport properties in a line defect superlattice of graphene", Phys. Lett. A 377, 2687-2691, 2013.

[14]Xiaoling Lü, Liwei Jiang and Yisong Zheng*, "Quasi-one-dimensional electronic states induced by an extended line defect in graphene: an analytic solution", J. Phys.: Condens. Matter 26, 035302, 2014.

[15]Guodong Yu, Liwei Jiang, and Yisong Zheng*, "Surface magnetism of the carbon foam: An ab-initio theoretical study", Appl. Phys. Lett. 105, 061601, 2014.

[16] Zhe Liu, Liwei Jiang and Yisong Zheng*, "Tunable valley polarization by a gate voltage when an electron tunnels through multiple line defects in graphene", J. Phys.: Condens. Matter 27, 045501, 2015.


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