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Wen-Li Yang
Time:【2012-04-29】        Read: 次

 Prof. Wen-Li Yang  Institute of Modern Physics,  Northwest University,  Tai Bai Bei Lu 229#, Xi’an 710069, P. R. China  Phone: 86-29-88303490  Fax: 86-29-88302331  Email: wlyang@nwu.edu.cn

Prof. Yang obtained his B.Sc in applied physics from Xian Jiao-Tong University in 1986 and the PhD in theoretical/Mathematic physics from Northwest University in 1996. He becomes a professor since 1999. His main research interests are quantum (supersymmetric ) integrable systems and related infinite-dimensional (super)algebras, conformal field theories. He has previously succeeded in securing prestigious Fellowships, including an Alexander von Humboldt Fellowship (2001-2002) and a Japan Society for the Promotion of Science Research Fellowship (2002-2004).

  Brief Résumé:  7/1996, Ph.D. in Theoretical Physics, Northwest University, P.R.China  7/1996-12/2000, Post-Doc at Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences (CAS);  Post-Doc at Institute of Modern Physics, Northwest University, P.R.China  12/1999, Professor, Northwest University, P.R.China  01/2001-08/2002, Alexander von Humboldt Fellow, Physikalisches Institut, Universit?t Bonn  11/2002-05/2004, Japan Society for the Promotion of Scienc Fellow , Yukawa Institute for Theoretical Physics, Kyoto University  05/2004-11/2009, Research associate(Level A、Level B), Department of Mathematics, University of Queensland  11/2009-Present, Professor, Institute of Modern Physics, Northwest University, P.R.China  Research Interest and Funding:    My main research interests focus on the symmetric algebras related to classical/quantum field theory, and also on quantum information. In recent years, as a principle investigator,  I has taken several items of state-level scientific projects, include National Natural Science Foundation Project, Alexander von Humboldt Fellowship (German), Japan Society for the Promotion of Science Fellowship (Japan), Australian Research Council Project (Australia), Shaanxi Natural Science Fundamental Research Project, etc.  Awards:  1997, the Award of Progress of Science and Technology of National Education Commission (third class)  1998, the Award of Science and Technology of Shaanx for Youth   1999, the Award of Science and Technology of Shaanx (second class)  2005, the Award of Science and Technology of Shaanx (second class)  12/2009,  the program of “One Hundred Talented People”of Shaanxi  Selected publications:  I am an author or co-author of more than 100 journal papers (Including Journal of High Energy Physics, Nuclear Physics B, Physics Letters B , Physics Review D, etc)  1.J. Feng, W.-L. Yang, Yao-Zhong and H. Fan, Notes on teleportation in an expanding space,  Phys. Lett.  B 719 (2013), 430-434.  2.K. Hao, W.-L. Yang, H. Fan, S.-Y. Liu, K. Wu, Z.-Y. Yang and Y.-Z. Zhang, Determinant representations for scalar products of the XXZ Gaudin model with general boundary terms, Nucl. Phys. B 862 (2012), 835-849.  3.W.-L. Yang, X. Chen, J. Feng, K. Hao, B.-Y. Hou, K.-J. Shi and Y.-Z. Zhang, Determinant representations of scalar products for the open XXZ chain with non-diagonal boundary terms, JHEP 01 (2011), 006 (26 pages).  4.W.-L. Yang, X. Chen, J. Feng, K. Hao, C.-Y. Sun, Z.-Y. Yang and Y.-Z. Zhang, Domain wall partition function of the eight-vertex model with a non-diagonal reflecting end, Nulc. Phys. B 847 (2011), 367-386.  5.W.-L. Yang and Y.-Z. Zhang, Drinfeld twists of the open XXZ chain with non-diagonal boundary terms, Nucl. Phys. B 831 (2010), 408-428.  6.W.-L. Yang, Y.-Z. Zhang and S. Kault, Differential operator realizations of super-algebras and free field representations of corresponding current algebras, Nucl. Phys. B 823 (2009), 372-402.  7.W.-L. Yang and Y.-Z. Zhang, Free field realization of the $osp(2n|2n)$ current algebra, Phys. Rev. D 78 (2008), 106004 (12 pages).  8.W.-L. Yang and Y.-Z. Zhang, On explicit free field realizations of current algebras, Nucl. Phys. B 800 (2008), 527-546.  9.W.-L. Yang and Y.-Z. Zhang, Multiple reference states and complete spectrum of the  $Z_n$ Belavin model with open boundaries, Nucl. Phys. B 789 (2008), 591-609.  10.W.-L. Yang and Y.-Z. Zhang, On the second reference state and complete eigenstates of the open XXZ chain, JHEP 04 (2007), 044 (11pages).  11.W.-L. Yang, Y.-Z. Zhang and X. Liu, $gl(4|4)$ current algebra: free field realization and screening currents, Phys. Lett. B 641 (2006), 329-334.  12.W.-L. Yang and Y.-Z. Zhang,$T-Q$ relation and exact solution for the XYZ chain with general non-diagonal boundary terms, Nucl. Phys. B 744 (2006), 312-329.  13.W.-L. Yang, Y.-Z. Zhang and S.-Y. Zhao, Drinfeld twists and algebraic Bethe ansatz of the super-symmetric model associated with $U_q(gl(m|n))$, Commun. Math. Phys. 264 (2006), 87-114.  14.W.-L. Yang, R. I. Nepomechie and Y.-Z. Zhang, Q-operator and T-Q relation from the fusion hierarchy, Phys. Lett. B 633 (2006), 664-670.  15.W.-L. Yang, Y.-Z. Zhang and R. Sasaki,$A_{n-1}$ Gaudin model with open boundaries, Nucl. Phys. B 729 (2005), 594-610.  16.W.-L. Yang, A. Belavin and R. Sasaki, Central elements of the elliptic $Z_n$ monodromy matrix algebra at roots of unity, Nucl. Phys. B 710 (2005), 614-628.  17.W.-L. Yang and Y.-Z. Zhang, Exact solution of the $A^{(1)}_{n-1}$ trigonometric vertex model with non-diagonal open boundaries, JHEP 01 (2005), 021 (22 pages).  18.W.-L. Yang, Y.-Z. Zhang and S.-Y. Zhao, Drinfeld twists and algebraic Bethe ansatz of the super-symmetric t-J model, JHEP 12 (2004), 038 (23 pages).  19.W.-L. Yang and Y.-Z. Zhang, Non-diagonal solution of the reflection equation for trigonometric $A^{(1)}_{n-1}$ vertex model, JHEP 12 (2004), 019 (12 pages).  20.W.-L. Yang, Y.-Z. Zhang and M. D. Gould, Exact solution of the XXZ Gaudin model with generic open boundaries, Nucl. Phys. B 698 (2004), 503-516.  21.W.-L. Yang, R. Sasaki and Y.-Z. Zhang, $Z_n$ elliptic Gaudin model with open boundaries, JHEP 09 (2004), 046 (18 pages).  22.W.-L. Yang and R. Sasaki, Exact solution of $Z_n$ Belavin model with open boundary condition, Nucl. Phys. B 679 (2004), 495-520.                                          


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