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Optics Electronics
Optics Electronics
Yixiang Wang
Date:2018-06-25        click:         Source:

Yixiang Wang

GenMale

 Birth1985.4

TitleAssociate Professor

Tel15251607805

E-mailwangyixiang@jiangnan.edu.cn

Academic Introduction 

Ph.D., Associate Professor, Master's Supervisor. Teacher of School of Science in Jiangnan University. He achieved his Ph.D. of science from College of Physics, Nanjing University in 2011. His research area lies in the physics properties of electronic system in condensed matter theory and has published over 20 SCI papers. He has been supported by several funds such as the National Natural Science Foundation, the Natural Science Foundation of Jiangsu Province and the Fundamental Research Funds for the Central Universities. He has also participated in the completion of the national 973, 863 natural science fund and many other key topics.

Jobs and Research Experiences

2013.10-Now, Jiangnan University, School of Science, Associate Professor 

2017.12-2018.12, University of Pittsburgh, Department of Physics and Astronomy, Visiting Scholar

2011.06-2013.10, School of Science, Jiangnan University, Lecturer

Research Area

Transport properties, optical properties and strong correlation properties of electrons in condensed matter systems.

Main Publication List

[1] Y. X. Wang*, F. Li, and B. Bian, Interaction-induced phase transitions of type-II Weyl semimetal, Physical Review B, 96, 165203 (2017). 

     [2] Y. X. Wang* and J. Cao, Hubbard interaction in the Arbitrary Chern Number Insulator: A Mean-field Study, Physics Letters A 381, 1615 (2017).

[3] Y. X. Wang*, Magneto-optical response in Arbitrary-Chern number phase, Physics Letters A, 380, 2312 (2016).

[4] Y. X. Wang*, J. Cao, and Y. M. Wu, Distant-neighbor hopping induced the Dirac points and the high Chern number topological phase on π-flux square lattice, Physical Letters A, 379, 2783 (2015).

[5] Y. X. Wang*, F. X. Li, and J. Cao, Valley-degeneracy-broken Induced the Arbitrary-Chern Number Insulator on Square Lattice and the Quantum Hal Effect, Journal of Physical Society of Japan 84, 024604 (2015).

     [6] Y. X. Wang*, F. X. Li, J.Cao, and Y. M. Wu, Detecting the Anomalous Quantum Hall phase under magnetic field, Physics Letters A, 378, 2245 (2014).

[7] Y. X. Wang*, F. X. Li, and Y. M. Wu, Quantum Hall Effect of the Haldane Model under the magnetic field, Europhysics Letters, 105, 17002 (2014).

[8] Y. X. Wang*, F. X. Li, and Y. M. Wu, Optically engineering the topological properties in a two dimensional square lattice. Europhysics Letters, 99, 47007 (2012).

[9] Y. X. Wang*, Z. Yang, and S. J. Xiong, Study of Zitterbewegung in grpahene bilayer with perpendicular magnetic field, Europhysics Letters, 89, 17007 (2010).

[10] Y. X. Wang*, L. P. Shi, and S. J. Xiong, Time evolution of charge conductivity of graphene bilayers, Europhysics Letters, 87, 57002 (2009).

Main Scientific Research Projects List

1. Natural Science Foundation of Jiangsu Province, Study of the competition between topological states and external fields, 2014/7- 2017/12, Preside, Completed.

2. Special Topics for Theoretical Physics, Theoretical study of the topological properties of HgTe/CdTe quantum wells modulated by the optical field, 2013/1-2013 /12, Preside, Completed.

     3. Fundamental Research Funds for the Central Universities, Study of the electromagnetic radiation field of the ZB phenomenon, 2012/4-2013/12, Preside, Completed.

Contact Information

School of Science, Jiangnan UniversityNo.1800 Lihu Avenue, Wuxi, Jiangsu, 214122, China

Update Date

Last updated in March, 2018.

 

 

 

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