
联系方式:
邮箱:wangjian at yzu.edu.cn
地址:扬州市四望亭路180号,
扬州大学物理科学与技术学院
物理楼411#。
邮编:225002.
一、简历
1)教育简历
1999/03-2002/07,中科院等离子物理研究所,博士
1995/09-1998/08,苏州大学物理系, 硕士
1990/09-1994/06, 扬州大学物理系, 本科
2)工作简历
1994/07-至今,扬州大学,物理科学与技术学院,讲师/副教授/教授
其中:
2010/06-2010/09, 新加坡国立大学,物理系,访问学者
2008/08-2008/09, 香港浸会大学, 物理系,访问学者
2008/06-2008/07, 新加坡国立大学,物理系,访问学者
2004/03-2007/07, 新加坡国立大学物理系,博士后
2001/03-2001/09, 加拿大多伦多大学高级纳米技术中心访问学者
二、研究领域
主要研究领域为低维体系热输运,复杂系统与非线性动力学,主持多项国家自然基金和江苏省自然科学基金。2012年被评为江苏省“青蓝工程”学术带头人培养对象,2013年被评为江苏省第四期“333工程”第三层次培养对象。
三、代表作论文
1)Jian Wang, Ai-Juan Zhang, and Yuansheng Tang, Tunable thermal conductivity in carbon allotrope sheets: Role of acetylenic linkages, JOURNAL OF APPLIED PHYSICS, 2015, 118: 195102.
2)Chenhan Liu, Zhiyong Wei, Jian Wang, Kedong Bi, Juekuan Yang, and Yunfei Chen, the contact area dependent interfacial thermal conductance, AIP Advances 2015, 5:127111.
3)Jian Wang, Xiao-Ming Wang, Yun-Fei Chen and Jian-ShengWang, " Dimensional crossover of thermal conductance in graphene nanoribbons: a irst-principles approach", J. Phys.: Condens. Matter 24 (2012) 295403
4)Feng, A.-X., Fu, C.-H., Xu, X.-L., Zhou, Y.-P., Chang, H., Wang, J., He, D.-R., Feng, G.-L., ”An extended clique degree distribution and its heterogeneity in cooperation competition networks” Physica A 391 2454(2012).
5)Jian Wang, Jian-Sheng Wang, " Tuning thermal transport in nanotubes with topological defects", Appl. Phys. Lett., 99, 091905 (2011) ( Selected for the September 12, 2011 issue of Virtual Journal of Nanoscale Science & Technology)
6)Sheng-Rong Zou, Ai-Hua Gu, Ai-Fen Liu, Xiu-Lian Xu, Jian Wang, Da-Ren He, "Characteristics for two kinds of cascading events", Physica A 390 1440(2011).
7)Yu-hua Xue, Jian Wang, Liang Li, Daren He and Bambi Hu, et al, “Optimizing transport efficiency on scale-free networks through assortative or dissortative topology”, Physical Review E 81, 037101 (2010)
8)J. Wang and J.-S. Wang, “Single-mode phonon transmission in symmetry-broken carbon nanotubes: Role of phonon symmetries” , Journal of Applied Physics 105, 063509 (2009) Virtual Journal of Nanoscale Science & Technology -- March 30, 2009
9)J.-S. Wang, J. Wang, and J. T. Lü, ``Quantum thermal transport in nanostructrures,'' Eur. Phys. J. B, {62}, 381 (2008).(Review article)
10)J. Wang and J.-S. Wang, ``Characteristics of phonon transmission across epitaxial interfaces: a lattice dynamic study,'' J. Phys.: Condens. Matter, {19}, 236211 (2007);
11)J. Wang and J.-S. Wang, ``Dimensional crossover of thermal conductance in nanowires,'' Appl. Phys. Lett. {90}, 241908 (2007). Selected for Virtual Journal of Nanoscale Science & Technology(Vol.15 No.25, 2007)
12)J.-S. Wang, N. Zeng, J. Wang, C. K. Gan, ``Nonequilibrium Green's function method for thermal transport in junctions,'' Phys. Rev. E {75}, 061128 (2007). Selected for Virtual Journal of Nanoscale Science & Technology(Vol. 16 No.2 , 2007)
13)Wang J., Wang J.-S, “Carbon nanotube thermal transport: Ballistic to diffusive”, Appl. Phys. Lett. 88, 111909 (2006) ( It has been selected for the March 27, 2006 issue of Virtual Journal of Nanoscale Science & Technology )
14)Wang J., Wang J.-S, “Mode-dependent energy transmission across nanotube junctions calculated with a lattice dynamics approach”, Physical Review B 74, 054303 (2006). (It has been selected for the August 21, 2006 issue of Virtual Journal of Nanoscale Science & Technology)
15)Wang J.-S, Wang J., and Zeng Nan, Nonequilibrium Green's function approach to mesoscopic thermal transport, Physical Review B 74, 033408(2006)
16)J. Wang, H. E. Ruda and B. Qiao, “Decoherence of Quantum Registers in the Weak-Coupling Limmit”, Physics Letters A 294(2002) 6
17)B. Qiao, H.E. Ruda, J. Wang, “Multiqubit Computing and error-avoiding codes in space using quantum dot”, Journal of Applied Physics 91(2002)2524
18)J. Wang, X-L. Ding, B. Hu, B.-H. Wang, J.-S. Mao, and D.-R. He, “Characteristics of a Piecewise Smooth Area-Preserving Map”, Physical Review E, 64, 026202 (2001);
19) Wang J., Ding X-L., Wang B.-H., He D.-R., “Quasi-Attractors in a Piece-Wise Smooth .Area-Prserving Map”, Chin.Phys.Lett, 18, 13, (2001)