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侯净敏教授简历

 

作者:物理学院    师资队伍来源:物理学院    点击数:19252    更新时间:2014/9/29

 

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    侯净敏,男,教授,博士生导师。20056月南开大学毕业,获得理学博士学位。毕业后来到东南大学物理系(现物理学院)工作,2006年破格晋升为副教授,2010年获得博士生导师资格,2011年破格晋升为教授。2007年获得东南大学优秀青年教师教学科研资助计划。目前已获得国家自然科学基金项目3项,在顶级物理期刊Physical Review Letters和一流物理期刊Physical Review APhysical Review B,以及其它物理期刊上发表学术论文四十余篇。具有广泛的研究经历,目前主要研究兴趣集中在一些新近发展的研究领域,其中包括凝聚态中的拓扑量子相等奇异现象,拓扑材料的寻找,以及用冷原子和光晶格系统对凝聚态物理现象进行量子模拟。     

   

 

联系方式:

地址:江苏省南京市江宁区东南大学物理学院, 211189

E-mail: jmhou@seu.edu.cn

电话:025-52090606-8403

 

讲授课程:

1. 《群论》 研究生课程

2. 《物理学史》 本科研讨课

3. 《原子物理学》 本科基础课

4. 《数学物理方法B》 本科基础课

5. 《基础物理实验》 本科基础课      

 

主要研究领域

1. 拓扑材料:拓扑绝缘体、拓扑超导体、拓扑半金属

2. 光晶格中拓扑相

3. 冷原子物理

     

主持与参与项目:

1. 人造非阿贝尔规范场下光晶格中超冷原子性质的研究, 国家自然科学基金,主持。

2. 光晶格-超冷原子系统中拓扑量子相及其性质的研究,国家自然科学基金,主持。

3. 东南大学优秀青年教师教学和科研资助计划。

4. 光格子中的超冷原子及相关问题,国家自然科学基金理论物理专项,主持。

 

发表论文:

1.       Jing-Min Hou* and Wei Chen, Hidden symmetry-protected Z2 topological insulator in a cubic lattice, Phys. Rev. B 96, 235108 (2017).

2.       Wei Chen, Hai-Zhou Lu, and Jing-Min Hou*, Topological semimetals with a double-helix nodal link, Phys. Rev. B 96, 041102(R) (2017).

3.       Yan-Ying Li and Jing-Min Hou*, Quantum phases  of cold bosonic atoms in an optical lattice with inhomogeneous atomic interactions and coexistence of multi phase, Commun. Theor. Phys. 67, 421-424 (2017).

4.       Jing-Min Hou* and Wei Chen, Weyl semimetals in optical lattices: moving and merging of Weyl points, and hidden symmetry at Weyl points, Sci. Rep. 6, 33512 (2016).

5.       Wei Chen, Wei-Yin Deng, Jing-Min Hou, D. N. Shi, L. Sheng, and D. Y. Xing,  pi spin Berry phase in a quantum-spin-Hall-insulator-based interferometer: evidence for the helical spin texture of the edge states, Phys. Rev. Lett. 117, 076802 (2016).

6.       Jing-Min Hou* and Wei Chen, Hidden-symmetry-protected quantum pseudo-spin Hall effect in optical lattices, Phys. Rev. A 93, 063626 (2016).

7.       Ji-Xuan Hou, Xu-Chen Yu, and Jing-Min Hou, Microcanonical analysis on a system with long-range interactions, Int. J. Theor. Phys. 55, 3923 (2016).

8.       Guo-Xiang Wang, Shuai Dong, and Jing-Min Hou*, Prediction of topological  insulators in supercubane-like materials based on first-principles calculations,  J. Phys.: Condens. Matter 28, 125502 (2016).

9.       Jing-Min Hou* and Wei Chen, Hidden symmetry and protection of Dirac points on the honeycomb lattice, Sci. Rep. 5, 17571 (2015).

10.  Jing-Min Hou*, Moving and merging of Dirac points on a square  lattice and hidden symmetry protection, Phys. Rev. B 89, 235405 (2014).

11.  Jing-Min Hou*, Hidden-symmetry-protected topological semimetals on a square lattice, Phys. Rev. Lett. 111, 130403 (2013).

12.  Jing-Min Hou* and Guo-Xiang Wang, Topological insulators on the ruby lattice with Rashba spin-orbit coupling, Commun. Theor. Phys. 60, 129 (2013).

13.  Guo-Xiang Wang and Jing-Min Hou*, Topological insulators in alpha-graphyne, Commun. Theor, Phys. 59, 489 (2013).

14.  Jing-Min Hou*, Wen-Xin Zhang, and Guo-Xiang Wang, Three-dimensional topological insulators in the octahedron-decorated cubic lattice, Phys. Rev. B 84, 075105 (2011).

15.  Long Du, Wen-Xin Zhang, Jia-Yan Ding, Guo-Xiang Wang, and Jing-Min Hou*, Thermal entanglement in Lipkin-Meshkov-Glick Model, Commun. Theor. Phys. 56, 61 (2011).

16.  Long Du, Jing-Min Hou*, Jia-Yan Ding, Wen-Xin Zhang, Zhi Tan, and Ting-Ting Chen, Scaling of entanglement entropy for spin chain with Dzyaloshinskii-Moriya interaction, Chin. Phys. B 20, 0203062011).

17.  Jing-Min Hou*, Long Du, Jia-Yan Ding, and Wen-Xin Zhang, Thermal entanglement in molecular spin rings, Chin Phys. B, 19, 110313 (2010).

18.  Jing-Min Hou*, Incommensurate fractal spectrum of a two-dimensional non-Bravais lattice under a magnetic field, Physica E 42, 1347 (2010).

19.  Jing-Min Hou*, Light-induced unconventional Landau levels of ultracold fermions in a trilayer honeycomb lattice, Sci. Chin.: Phys. Mech. & Astron. 53, 321 (2010).

20.  Jing-Min Hou* and Li-Jun Tian, Hofstadter’s butterfly and phase transition of checkerboard superconducting network in a magnetic field, Commun. Theor, Phys. 53, 587 (2010).

21.  Qing-Qing Lu and Jing-Min Hou*, Novel quantum phases of ultracold bosonic atoms in honeycomb optical lattice, Commun. Theor. Phys. 53, 861 (2010).

22.  Jing-Min Hou*, Wen-Xing Yang, and Xiong-Jun Liu, Massless Dirac fermions in a square optical lattice,  Phys. Rev. A 79, 043621(2009).

23.  Jing-Min Hou*, Light-induced fractal energy spectrum of ultracold fermions on the two-dimensional optical lattice with T-3 symmetry,  J. Phys. B 42, 165302 (2009).

24.  Jing-Min Hou* and Wen-Xing Yang, Next-nearest-neighbor-tunneling-induced symmetry breaking of Hofstadter’s butterfly spectrum for ultracold atoms on the honeycomb lattice, Phys. Lett. A 373, 2774-2777 (2009).

25.  Jing-Min Hou* and Qing-Qing Lu, Hofstadter’s butterfly energy spectrum of ultracold fermions on the two-dimensional triangular optical lattice, Phys. Lett. A 373, 698-700 (2009).

26.  Jing-Min Hou*, Energy bands and Landau levels of ultracold fermions in the bilayer honeycomb optical lattice, J. Mod. Opt. 56, 1182-1187 (2009).

27.  Jing-Min Hou*, Unconventional energy bands and chirality of ultracold atoms in trilayer honeycomb lattice, Commun. Theor. Phys. 52, 247-250 (2009).

28.  Jing-Min Hou*Light-induced Hofstadter’s butterfly spectrum of ultracold atoms on the two-dimensional kagome lattice Chin. Phys. Lett. 26, 123701 (2009).

29.  Jing-Min Hou*, Quantum phases of ultracold bosonic atoms in a two-dimensional optical superlattice, Mod. Phys. Lett. 23, 25-33 (2009).

30.  Jing-Min Hou*, Light-induced Hofstadter’s butterfly spectrum in optical lattice, Commun. Theor. Phys. 51, 441-444 (2009).

31.  Jing-Min Hou*, Unconventional Landau levels of ultracold fermionic atoms on two-dimensional  honeycomb lattice, Commun. Theor. Phys. 52, 251-254 (2009).

32.  Wen-Xing Yang, Jing-Min Hou, Yuan-Yao Lin, and Ray-Kuang Lee, Detuning management of optical solitons in coupled quantum wells, Phys. Rev. A 79, 033825 (2009).

33.  Wen-Xing Yang, Jing-Min Hou, and Ray-Kuang Lee, Highly efficient four-wave mixing via intersubband transitions in InGaAs/AlAs coupled double  quantum well structures, J. Mod. Opt. 56, 716 (2009).

34.  Jing-Min Hou*, Tian-Tao Zhao and Li-Jie Zhang, Excitations in a dipolar Bose–Einstein condensate, Int J Theor Phys 47, 1211–1218 (2008)

35.  Wen-Xing Yang, Jing-Min Hou, and Ray-Kuang Lee, Ultraslow bright and dark solitons in semiconductor quantum wells, Phys. Rev. A 77, 033838 (2008).

36.  Shuo Jin, Bing-Hao Xie, Zhao-Xian Yu, and Jing-Min Hou, su(1,2) algebraic structure of XYZ antiferromagnetic model in linear spin-wave frame, Commun. Theor, Phys. 49, 1151 (2008).

37.  Jing-Min Hou*, Dynamics of spin-2 Bose-Einstein condensates, Comm.  Theor. Phys., Commun. Theor. Phys. 48,  1041–1046 (2007).

38.  Jing-Min Hou*, Excitation spectrum of spin-1 bosonic atoms in an  optical lattice with high filling factors, Comm. Theor. Phys. 47, 636-642  (2007).

39.  Jing-Min Hou*, Li-Jun Tian, and Shuo Jin, Dark states and coherent  control of spin states in molecular magnets, Phys. Rev. B 73, 134425 (2006).

40.  Jing-Min Hou* and Li-Jun Tian, Excitation spectrum of spin-1 bosonic atoms in Mott insulating phase, Comm. Theor. Phys. 45, 87-94  (2006).

41.  Li-Jun Tian, Guo-Hong Yang, Hong-Biao Zhang, and Jing-Min Hou, Reduced properties and applications of Y(sl(2)) algebra for a two-spin system, Chin. Phys. Lett. 23, 1659 (2006).

42.  Jing-Min Hou* and Li-Jun Tian, Collective excitations in spin-2 Bose-Einstein condensates, Comm. Theor. Phys. 44,  1025-1036 (2005).

43.  Jing-Min Hou*, Li-Jun Tian  and  Mo-Lin Ge, Two-qubit quantum logic gate in molecular magnets, Chin. Phys. Lett. 22,  2147-2150 (2005).

44.  Shuo Jin, Jing-Min Hou, Bing-Hao Xie Li-Jun Tian and Mo-Lin Ge, Superfluid–Mott-insulator transition of spin-2 cold bosons in an optical lattice in a magnetic field,  Phy. Rev.  A 70, 023605 (2004).

45.  Jing-Min Hou* and Mo-Lin Ge, Quantum phase transition of spin-2 cold bosons in an optical lattice,  Phy. Rev.   67, 063607 (2003).

46.  Xin-He Meng, Jing-Min Hou, Kai-Yi Lu, and Wen-Yao Zhao, Tests for cosmological evolution fo a brane universe model, Int. J. Mod. Phys. D 12, 369-379 (2003).

 

 

 

 

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