Wu-Ming Liu
Career History W. M. Liu was born in Hunan province and the Ph.D in the Institute of Metal Research, Chinese Academy of Sciences, Shenyang, China, 06/1994. At the same time, the number of his publication papers included in SCI ranked the third in the country so that he got the special awards scholarships of the President of Chinese Academy of Sciences. During 2008-2011, He is the members of editorial board of the English journal: Frontiers of Physics in China.
Professional experiences:
Postdoctoral Fellow, Institute of Physics, Chinese Academy of Sciences, Beijing, China, 07/1994 - 06/1996.
Associate Professor, Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing, China, 07/1996 - 06/1998.
Research Scientist, Department of Physics, University of Texas at Austin, Austin, USA, 07/1998 - 06/2000
Research Scientist, Bartol Research Institute, University of Delaware, Newark, USA, 07/2000 - 01/2002
Professor, Institute of Physics, Chinese Academy of Sciences, Beijing, China, 2/2002 –
Research Interests 1. Atomic and molecular physics and quantum optics theory:
1.1 laser cooling atoms and molecules, ultracold atoms and molecules, Bose-Einstein condensation, BEC-BCS crossover, multi-body boson and Fermi systems theory.
2. Theory of quantum information and quantum computation:
2.1 quantum information and quantum computation;
3. Condensed Matter Theory:
3.1 Spin-electronic materials and spintronics;
3.2 spin - orbit coupling and the spin Hall effect;
3.3 Strongly correlated systems。
Research Experience 1. Mathematical methods in Physics (PACS number 02.): Integrable systems (02.30.Ik), Ordinary differential equations (02.30.Hq), Partial differential equations (02.30.Jr), Inverse problems (02.30.Zz), Solutions of wave equations: bound states (03.65.Ge), and solitons (05.45.Yv): integrable and near-integrable statistical physical models, condensed matter models and nonlinear partial differential equations in general physics: the exact solutions, solitons, instantons, vortices, asymptotic solutions, adiabatic dynamics, stochastic dynamics, nonlinear dynamics, nonequilibrium dynamics, long-time behavior, etc.

2. Matter waves, quantum condensation phenomena and superfluidity (PACS number 03.): Matter waves (03.75.-b), quantum condensation phenomena (03.75.Fi), Bose-Einstein condensates (03.75), atom and neutron optics (03.75.Be), atom and neutron interferometry (03.75.Dg), entanglement and decoherence in Bose-Einstein condensates (03.75.Gg), static properties of condensates; thermodynamical, statistical, and structural properties (03.75.Hh), dynamic properties of condensates; collective and hydrodynamic excitations, superfluid flow (03.75.Kk), tunneling, Josephson effect, Bose-Einstein condensates in periodic potentials, solitons, vortices, and topological excitations (03.75.Lm), multicomponent condensates; spinor condensates (03.75.Mn), other Bose-Einstein condensation phenomena (03.75.Nt), atom lasers (03.75.Pp), degenerate Fermi gases (03.75.Ss), photon interactions with atoms (32.80.-t), optical cooling of atoms; trapping (32.80.Pj), coherent control of atomic interactions with photons (32.80.Qk), atom interferometry techniques (39.20.+qn), quantum fluids and solid (67.), liquid and solid helium (67.), boson degeneracy and superfluidity of 4^He (67.20+k), mixed systems, liquid 3^He and 4^He mixtures (67.60.-g), etc.

3. Electronic structure and electrical properties of thin films and low dimensional structure (PACS number 73.): Weak or Anderson localization (73.20.Fz), delocalization processes (73.20.Jc), collective excitations (73.20.Mf), electron states and collective excitations in multilayers, quantum wells, mesoscopic and nanoscale systems (73.21.-b), electronic transport in mesoscopic systems (73.23.-b), electronic transport in mesoscopic or nanoscale materials and structures (73.63.-b), etc.

4. Theory of magnetic properties and materials (PACS number 75.): General theory and models of magnetic ordering (75.10.-b), classical spin models (75.10.Hk), quantized spin models (75.10.Jm), band and itinerant models (75.10.Lp), intrinsic properties of magnetically ordered materials (75.30.-m), spin waves (75.30.Ds), exchange and superexchange interactions (75.30.Et), spin density waves (75.30.Fv), magnetic anisotropy (75.30.Gw), magnetic impurity interactions (75.30.Hx), magnetic phase boundaries (75.30.Kz), valence fluctuation and Kondo lattice and heavy fermion phenomena (75.30.Mb), colossal magnetoresistance (75.30.Vn), macroscopic quantum phenomena in magnetic systems (75.45.+j), domain effects (75.60.-d), magnetic properties of thin films (75.70.-i), magnetic properties of nanostructures (75.75.+a), spin polarized transport (72.25.-b), etc.


5. Quantum phase transition theory: Quantum phase transition theory and its applications in the Nanomaterials, the Josephson-junction arrays, the quantum Hall effect systems, the high-T_c superconductor, the strongly corrected electron systems, the conductor near its metal-insulator transition, the two-dimensional films, the magnetic systems, etc.

6. Quantum many-body theory: Quantum many-body theory and its applications in the nanomaterials, the quantum Hall effect systems, the high-T_c superconductor, the strongly corrected electron systems, the disorder systems, the quantum magnetism, the mesoscopic systems, etc.

Current Research interest: 1.The National Key Basic Research Program (also known as 973 plans) "Atomic Frequency Standard Physics and Technology ", carry out the theoretical research on Bose - Einstein condensate of new state . we do theoretical study on the atom optics and atom laser in-depth , propose new directions for the experiment, and provide the basis for exploration of new devices.

2. The National Natural Science Foundation research project "Theoretical Physics and Interdisciplinary Perspectives on issues" carry out the theoretical research on the spin - orbit coupling, strongly correlated and disordered systems , which provide a theoretical basis for exploration new materials, new physical state, the development and design of new devices .including spin-electronic materials to address the high temperature superconductivity, the restrained small subsystem (such as quantum dots, carbon nanotubes, photonic crystals, etc.).
Publications
  1 Taiping Lu, Ziguang Ma, Chunhua Du, Yutao Fang, Haiyan Wu, Yang Jiang, Lu Wang, Longgui Dai, Haiqiang Jia, Wuming Liu & Hong Chen
Temperature-dependent photoluminescence in light-emitting
diodes
Scientific Reports, 4, 6131 (2014)
  2 Hong-Shuai Tao, Yao-Hua Chen, Heng-Fu Lin, Hai-Di Liu & Wu-Ming Liu
Layer Anti-Ferromagnetism on Bilayer Honeycomb Lattice
Scientific Reports, 4, 5367 (2014)
  3 Ming Yang & Wu-Ming Liu
The d-p band-inversion topological insulator in bismuth-based skutterudites
Scientific Reports, 4, 5131 (2014)
  4 Yi-Cai Zhang, Shu-Wei Song &Wu-Ming Liu
The confinement induced resonance in spin-orbit coupled cold atoms with Raman coupling
Scientific Reports, 4, 4992 (2014)
  5 Hai-Di Liu, Yao-Hua Chen, Heng-Fu Lin, Hong-Shuai Tao Wu-Ming Liu
Antiferromagnetic Metal and Mott Transition on Shastry-Sutherland Lattice
Scientific Reports, 4, 4829 (2014)
  6 Chao-Fei Liu, Heng Fan, Shih-Chuan Gou3 & Wu-Ming Liu
Crystallized and amorphous vortices in rotating atomic-molecular Bose-Einstein condensates
Scientific Reports, 4, 4224 (2014)
  7 Zhen Deng, Yang Jiang1, Wenxin Wang, Liwen Cheng, Wei Li, Wei Lu, Haiqiang Jia, Wuming Liu, Junming Zhou & Hong Chen
Indium segregation measured in InGaN quantum well layer
Scientific Reports, 4, 6734 (2014)
  8 An Bao, Hong-Shuai Tao, Hai-Di Liu, XiaoZhong Zhang & Wu-Ming Liu
Quantum magnetic phase transition in square-octagon lattice
Scientific Reports, 4, 6918 (2014)

  9

Yu Yi-Xiang, Jinwu Ye, and Wu-Ming Liu
Coherence lengths in attractively interacting Fermi gases with spin-orbit coupling
Phys. Rev. A 90, 053603 (2014)

  10

Heng-Fu Lin, Yao-Hua Chen, Hai-Di Liu, Hong-Shuai Tao, and Wu-Ming Liu
Mott transition and antiferromagnetism of cold fermions in the decorated honeycomb lattice
Phys. Rev. A 90, 053627 (2014)

  11

Yi-Cai Zhang, Wu-Ming Liu, and Hui Hu
Tuning a magnetic Feshbach resonance with spatially modulated laser light
Phys. Rev. A 90, 052722 (2014)

  12 Shu-Wei Song, Yi-Cai Zhang, Hong Zhao, Xuan Wang, and Wu-Ming Liu
Fragmentation of spin-orbit-coupled spinor Bose-Einstein condensates
Phys. Rev. A 89, 063613 (2014)
  13 Pei-Song He, Yao-Hui Zhu, and Wuming Liu,
Drag force on a moving impurity in a spin-orbit-coupled Bose-Einstein condensate
Phys. Rev. A 89, 053615 (2014)
  14 Xuebing Luo, Kezhao Zhou, Wuming Liu,, Zhaoxin Liang, and Zhidong Zhang
Fidelity susceptibility and topological phase transition of a two-dimensional spin-orbit-coupled Fermi superfluid
Phys. Rev. A 89, 043612 (2014)
  15 Fei-Jie Huang, Qi-Hui Chen, Wu-Ming Liu
Impact of scalar potentials on cold atoms with spin-orbit coupling
Phys. Rev. A 89, 033624 (2014)
  16 Shao-Jian Jiang, Wu-Ming Liu, Gordon W. Semenoff, and Fei Zhou
Universal Bose gases near resonance: A rigorous solution
Phys. Rev. A 89, 033614 (2014)
  17 Rui-Ning Wang, Jorge H. Rodriguez, and Wu-Ming Liu
Negative magnetoresistance and spin filtering of spin-coupled di-iron-oxo clusters
Phys. Rev. B 89, 235414 (2014)
  18 Xue-Feng Zhang, Qing Sun, Yu-Chuan Wen, W.-M. Liu, Sebastian Eggert, and An-Chun Jiand
Rydberg Polaritons in a Cavity: A Superradiant Solid
Phys. Rev. Lett. 110, 090402 (2013)
  19 Yu Yi-Xiang1, Jinwu Ye, & Wu-Ming Liu
Goldstone and Higgs modes of photons inside a cavity
Scientific Reports. 3, 3476 (2013)
  20 Xiao-Long Zhang, Lan-Feng Liu & Wu-Ming Liu
Quantum Anomalous Hall Effect and Tunable Topological States in 3d Transition Metals Doped Silicene
Scientific Reports. 3, 2908 (2013)
  21 Fadi Sun, Xiao-Lu Yu, Jinwu Ye, Heng Fan and Wu-Ming Liu
Topological Quantum Phase Transition in Synthetic Non-Abelian Gauge Potential: Gauge Invariance and Experimental Detections
Scientific Reports. 3, 2119 (2013)
  22 Q. Sun, G.-B. Zhu, W.-M. Liu, and A.-C. Ji
Spin-orbit coupling effects on the superfluidity of a Fermi gas in an optical lattice
PhysRevA.88.063637 (2013)
  23 Boyang Liu, Xiao-Lu Yu, and Wu-Ming Liu
Renormalization-group analysis of p-orbital Bose-Einstein condensates in a square optical lattice
PhysRevA.88.063605 (2013)
  24 Chao-Fei Liu, Yan-Mei Yu, Shih-Chuan Gou, and W.-M. Liu
Vortex chain in anisotropic spin-orbit-coupled spin-1 Bose-Einstein condensates
PhysRevA.87.063630 (2013)
  25 G.-B. Zhu, Q. Sun, Y.-Y. Zhang, K. S. Chan, W.-M. Liu and A.-C. Ji
Spin-based effects and transport properties of a spin-orbit-coupled hexagonal optical lattice
PhysRevA.88.023608 (2013)
  26 Xueyuan Hu, Heng Fan, D. L. Zhou, and Wu-Ming Liu
Superadditivity of quantum-correlating power
PhysRevA.88.012315 (2013)
  27 Shang-Shun Zhang, Xiao-Lu Yu, Jinwu Ye, and Wu-Ming Liu
Collective modes of spin-orbit-coupled Fermi gases in the repulsive regime
PhysRevA.87.063623 (2013)
  28 Pei-Song He, Wen-Long You, and Wu-Ming Liu
Stability of a two-dimensional homogeneous spin-orbit-coupled boson system
PhysRevA.87.063603 (2013)
  29 Xiao-Lu Yu, Shang-Shun Zhang, and Wu-Ming Liu
Normal-state properties of spin-orbit-coupled Fermi gases in the upper branch of the energy spectrum
PhysRevA.87.043633 (2013)
  30 Renyuan Liao, Zhi-Gao Huang, Xiu-Min Lin, and Wu-Ming Liu
Ground-state properties of spin-orbit-coupled Bose gases for arbitrary interactions
PhysRevA.87.043605 (2013)
  31 Xueyuan Hu, Heng Fan, D. L. Zhou, and Wu-Ming Liu
Quantum correlating power of local quantum channels
PhysRevA.87.032340 (2013)
  32 Shang-Shun Zhang, Heng Fan, and Wu-Ming Liu
Interaction- and filling-induced quantum anomalous Hall effect in ultracold neutral Bose-Fermi mixtures on a hexagonal lattice
PhysRevA.87.023622 (2013)
  33 Yi-Cai Zhang, Shu-Wei Song, Chao-Fei Liu, and Wu-Ming Liu
Zitterbewegung effect in spin-orbit-coupled spin-1 ultracold atoms
PhysRevA.87.023612 (2013)
  34 E. Kengne, A. Lakhssassi, Wu-Ming Liu and R. Vaillancourt
Phase engineering, modulational instability, and solitons of Gross–Pitaevskii-type equations in 1+1 dimensions
PhysRevE.87.022914 (2013)
  35 R. Liao, Y.-X. Yu, and W.-M. Liu,
Tuning the Tricritical Point with Spin-Orbit Coupling in Polarized Fermionic Condensates
Phys. Rev. Lett. 108, 080406 (2012)
  36 Yao-Hua Chen, Hong-Shuai Tao, Dao-Xin Yao, and Wu-Ming Liu,
Kondo Metal and Ferrimagnetic Insulator on the Triangular Kagome Lattice
Phys. Rev. Lett. 108, 246402 (2012)
  37 Xiao-Fei Zhang, Rui-Fang Dong, Tao Liu, Wu-Ming Liu and Shou-Gang Zhang
Spin-orbit-coupled Bose-Einstein condensates confined in concentrically coupled annular traps
PhysRevA.86.063628 (2012)
  38 Chao-Fei Liu, Heng Fan, Yi-Cai Zhang, Deng-Shan Wang and Wu-Ming Liu
Circular-hyperbolic skyrmion in rotating pseudo-spin-1/2 Bose-Einstein condensates with spin-orbit coupling
PhysRevA.86.053616 (2012)
  39 Pei-Song He, Renyuan Liao, and Wu-Ming Liu
Feynman relation of Bose-Einstein condensates with spin-orbit coupling
PhysRevA.86.043632 (2012)
  40 L. Wen, Q. Sun, H. Q. Wang, A. C. Ji, and Wu-Ming Liu
Ground state of spin-1 Bose-Einstein condensates with spin-orbit coupling in a Zeeman field
PHYSICAL REVIEW A 86, 043602 (2012)
  41 Chao-Fei Liu, and Wu-Ming Liu
Spin-orbit-coupling-induced half-skyrmion excitations in rotating and rapidly quenched spin-1 Bose-Einstein condensates
PHYSICAL REVIEW A 86, 033602 (2012)
  42 Jigen Chen, Ruquang Wang, Zhen Zhai, Jing Chen, Panming Fu, Bingbing Wang, and Wu-Ming Liu
Frequency-selected enhancement of high-order-harmonic generation by interference of degenerate Rydberg states in a few-cycle laser pulse
PHYSICAL REVIEW A 86, 033417 (2012)
  43 Ji Li, Deng-Shan Wang, Zhi-Yong Wu, Yan-Mei Yu, and Wu-Ming Liu,
Topological superfluid transition induced by a periodically driven optical lattice
PHYSICAL REVIEW A 86, 023628 (2012)
  44 S.-W. Su, I.-K. Liu, Y.-C. Tsai,Wu-Ming Liuand S.-C. Gou2
Crystallized half-skyrmions and inverted half-skyrmions in the condensation of spin-1 Bose gases with spin-orbit coupling
PHYSICAL REVIEW A 86, 013639 (2012)
  45 Guocai Liu, Ningning Hao, Shi-Liang Zhu, and Wu-Ming Liu,
Topological superfluid transition induced by a periodically driven optical lattice
PHYSICAL REVIEW A 86, 023601 (2012)
  46 Xueyuan Hu, Heng Fan, D. L. Zhou, and Wu-Ming Liu,
Necessary and sufficient conditions for local creation of quantum correlation
Phys. Rev. A 85, 032102 (2012)
  47 J. M. Zhang, C. Shen, and W. M. Liu,
Strong thermalization of the two-component Bose-Hubbard model at finite temperatures
Phys. Rev. A 85, 013637 (2012)
  48 L. Wen, W. M. Liu, Yongyong Cai, J. M. Zhang, and Jiangping Hu,
Controlling phase separation of a two-component Bose-Einstein condensate by confinement
Phys. Rev. A 85, 043602 (2012)
  49 Wei Han, Suying Zhang, Jingjing Jin, and W. M. Liu,
Half-vortex sheets and domain-wall trains of rotating two-component Bose-Einstein condensates in spin-dependent optical lattices
Phys. Rev. A 85, 043626 (2012)
  50 Wen-Zhuo Zhang, Peng Zhang, Ru-Quan Wang, and Wuming Liu,
Testing the equivalence between the canonical and Minkowski momentum of light with ultracold atoms
Phys. Rev. A 85, 053604 (2012)
  51 Yong-Gang Huang, Gengyan Chen, Chong-Jun Jin, W. M. Liu, and Xue-Hua Wang,
Dipole-dipole interaction in a photonic crystal nanocavity
Phys. Rev. A 85, 053827 (2012)
  52 Shu-Wei Song, Deng-Shan Wang, Hanquan Wang, and W. M. Liu,
Generation of ring dark solitons by phase engineering and their oscillations in spin-1 Bose-Einstein condensates
Phys. Rev. A 85, 063617 (2012)
  53 Guobao Zhu, Shengyuan A. Yang, Cheng Fang, Wuming Liu, and Yugui Yao
Theory of orbital magnetization in disordered systems
Phys. Rev. B 86, 214415 (2012)
  54 Jiangping Hu, Bao Xu, Wuming Liu, Ning-Ning Hao, and Yupeng Wang,
Unified minimum effective model of magnetic properties of iron-based superconductors
Phys. Rev. B 85, 144403 (2012)
  55 Wei Wu, Stephan Rachel, Wuming Liu, and Karyn Le Hur,
Quantum spin Hall insulators with interactions and lattice anisotropy
Phys. Rev. B 85, 205102 (2012)
  56 Zhenya Yan, V. V. Konotop, A. V. Yulin, and W.M. Liu,
Two-dimensional superfluid flows in inhomogeneous Bose-Einstein condensates
Phys. Rev. E 85, 016601 (2012)
  57 Lei Tan, Yu-Qing Zhang, and W.M. Liu,
Quantum phase transitions for two coupled cavities with dipole-interaction atoms
Phys. Rev A 84, 063816(2011)
  58 Shao-Jian Jiang, Xiao-Lu Yu and W.M. Liu,
Imbalanced ultracold Fermi gas in the weakly repulsive regime: Renormalization-group approach for p-wave superfluidity
Phys. Rev A 84, 063608(2011)
  59 Cai-Ying Ding, Xiao-Fei Zhang, Dun Zhao, Hong-Gang Luo and W.M. Liu,
Matter-wave solitons in heteronuclear atomic Bose-Einstein condensates with synchronously controllable interactions and potentials
Phys. Rev A 84, 053631 (2011)
  60 J.M. Zhang, C. Shen, W.M. Liu, L.M. Duan
Quantum quench dynamics of the Bose-Hubbard model at finite temperatures
Phys. Rev A 83, 063622 (2011)
  61 Q. Sun, X.H. Hu, W.M. Liu, X.C. Xie, A.C. Ji
Effective optomechanical approach to correlation properties of a 1D interacting bosonic gas in an optical cavity
Phys. Rev A 84, 023822 (2011)
  62 X.Q. Luo, D.L. Wang, Z.Q. Zhang, J.W. Ding, W.M. Liu,
Effect of the cross-coupling longitude-optical phonons on optical absorption and slow-light solitons properties in an asymmetric N-type semiconductor quantum wells
Phys. Rev 84, 033803 (2011)
  63 D.S. Wang, S.W. Song, B. Xiong, W.M. Liu,
Vortex states in a rotating Bose-Einstein condensate with spatiotemporally modulated interaction
Phys. Rev A 84, 053607 (2011)
  64 S.-W. Su, C.-H. Hsueh, I.-K. Liu, T.-L. Horng, Y.-C. Tsai, S.-C. Gou, W.M. Liu,
Crystallization of skyrmions and half-quantized vortices in the fast-rotating and rapidly-quenched spin-1 Bose-Einstein condensates
Phys. Rev A 84, 023601 (2011)
  65 Peng Zhang, Z.-Y. Ma, Jian-Hua Wu, W.M. Liu,
Diffraction of Bose-Einstein condensates in quantized light fields,
Phys. Rev A 84, 013614 (2011)
  66 Ke Liu,1 Lei Tan, Chun-Hai Lv, W.M. Liu,
Quantum phase transition in an array of coupled dissipative cavities,
Phys. Rev A 83, 063840 (2011)
  67 J. M. Zhang, C. Shen, W.M. Liu,
Nonautonomous matter waves in a waveguide,
Phys. Rev A 84, 023627 (2011)
  68 Jinwu Ye, J. M. Zhang, W.M. Liu, Keye Zhang, Yan Li, Weiping Zhang
Light-scattering detection of quantum phases of ultracold atoms in optical lattices,
Phys. Rev A 83, 051604(R)(2011)
  69 Qing Sun, Xing-Hua Hu, An-Chun Ji, W.M. Liu,
Dynamics of a degenerate Fermi gas in a one-dimensional optical lattice coupled to a cavity,
Phys. Rev A 83, 043606(2011)
  70 Q. Tian, L. Wu,J. F. Zhang, Boris A. Malomed, D. Mihalache, W.M. Liu,
Exact soliton solutions and their stability control in the nonlinear Schr¨odinger equation with spatiotemporally modulated nonlinearity,
Phys. Rev E 83, 016602 (2011)
  71 W. Wu, Y. H. Chen, H. S. Tao, N. H. Tong, W.M. Liu,
Interacting Dirac fermions on honeycomb lattice,
Phys. Rev. B 82, 245102 (2010)
  72 G. C. Liu, S. L. Zhu, S. J. Jiang, F. D. Sun, W.M.Liu,
Simulating and detecting the quantum spin Hall effect in the kagome optical lattice,
Phys. Rev. A82, 053605 (2010)
  73 P. Zhang, J. H. Wu, X. F. Zhang, W.M. Liu,
Bragg diffraction of interacting Bose-Einstein condensates
Phys. Rev. A82, 043628 (2010)
  74 Y. H. Chen, W. Wu, H. S. Tao, W.M. Liu,
Cold atoms in a two-dimensional triangular optical lattice as an artificial frustrated system,
Phys. Rev. A82, 043625 (2010)
  75 J. M. Zhang, W. M. Liu,
Directed coherent transport due to the Bloch oscillation in two dimensions
Phys. Rev. A82, 025602 (2010)
  76 D. S. Wang,X. H. Hu, W. M. Liu,
Localized nonlinear matter waves in two-component Bose-Einstein condensates with time- and space-modulated nonlinearities
Phys. Rev. A82, 023612 (2010)
  77 L. Wu, L. Li, J. F. Zhang, Dumitru Mihalache, Boris A. Malomed, W. M. Liu,
Exact solutions of the Gross-Pitaevskii equation for stable vortex modes in two-dimensional Bose-Einstei condensates
Phys. Rev. A81, 061805 (2010)
  78 C. Zhao, L. Jiang, X. X. Liu, W. M. Liu, X. B. Zou, and H. Pu,
Hartree-Fock-Bogoliubov theory of dipolar Fermi gases,
Phys. Rev. A81, 063642 (2010)
  79 Z. G. Li, M. J. Zhao, S. M. Fei, W. M. Liu,
Evolution equation for entanglement of assistance,
Phys. Rev. A81, 042312 (2010)
  80 M. Z. Wu, X. J. Zhou, W. M. Liu, X. Z.Chen,
Roughness with a finite correlation length in a microtrap,
Phys. Rev. A 81, 033625 (2010).
  81 D. S. Wang , X. H. Hu, J. P. Hu, W. M. Liu,
Quantized quasi-two-dimensional Bose-Einstein condensates with spatially modulated nonlinearity,
Phys. Rev. A81,025604 (2010).
  82 Z. D. Li, Q. Y. Li, P. B. He, J. Q. Liang, W. M. Liu, G. S. Fu,
Domain-wall solutions of spinor Bose-Einstein condensates in an optical lattice,
Phys. Rev. A81, 015602 (2010).
  83 Y. Q. Ma, S.Chen, H. Fan, W.M.Liu,
Abelian and non-Abelian quantum geometric tensor?
Phys. Rev. B81, 245129 (2010)
  84 R. Qi, X. L. Yu, Z. B. Li, W. M. Liu,
Non-Abelian Josephson effect between two F=2 spinor Bose-Einstein condensates in double optical traps,
Phys. Rev. Lett. 102, 185301 (2009).
  Cited 15 times in Web of Science
  85 Y. Y. Zhang, J. P. Hu, B. A. Bernevig, X. R. Wang, X. C. Xie, W. M. Liu,
Localization and the Kosterlitz-Thouless transition in disordered graphene,
Phys. Rev. Lett. 102, 106401 (2009).  Cited 20 times in Web of Science
  86 A. C. Ji, Q. Sun, X. C. Xie, W. M. Liu,
Josephson effect for photons in twoweakly linked microcavities,
Phys. Rev. Lett. 102, 023602 (2009).   Cited 15 times in Web of Science
  87 J. M. Zhang, S. Cui, H. Jiang, D. L. Zhou, W.M. Liu,
Probing the quantum ground state of a spin-1 Bose-Einstein condensate,
Phys. Rev. A 80, 043263 (2009).
  88 Z. G. Li,  S. M. Fei,  S. Albeverio, W. M. Liu,
Bound of entanglement of assistance and monogamy constraints,
Phys. Rev. A 80, 034301 (2009).
  89 H. Jing, J. Fu, Z. Geng, W.M. Liu,
Coherent two-color photoassociation in a spinor-1 Bose-Einstein condensate: Single-spin versus mixed-spin cases,
Phys. Rev. A 79, 045601 (2009).
  90 X. F. Zhang, X. H. Hu, X. X. Liu, W. M. Liu,
Vector solitons in two-component Bose-Einstein condensates with tunable interactions and harmonic potential,
Phys. Rev. A 79, 033630 (2009).  Cited 15 times in Web of Science
  91 J. M. Zhang, F. C. Cui, D. L. Zhou, W. M. Liu,
Nonlinear dynamics of a cigar-shaped Bose-Einstein condensate in an optical cavity,
Phys. Rev. A 79, 033401 (2009).  Cited 12 times in Web of Science
  92 X. H. Hu, X. F. Zhang, D. Zhao, H. G. Luo, W. M. Liu,
Dynamics and modulation of ring dark solitons in two-dimensional Bose-Einstein condensates with tunable interaction,
Phys. Rev. A 79, 023619 (2009).  Cited 12 times in Web of Science
  93 Z. G. Li, S. M. Fei, Z. D. Wang, W. M. Liu,
Evolution equation of entanglement for bipartite systems,
Phys. Rev. A 79, 024303 (2009).  Cited 25 times in Web of Science
  94 X. X. Liu, H. Pu, B. Xiong, W. M. Liu, J. B. Gong,
Formation and transformation of vector solitons in two-species Bose-Einstein condensates with a tunable interaction,
Phys. Rev. A 79, 013423 (2009).  Cited 12 times in Web of Science
  95 G. P. Zheng, J. Q. Liang, W. M. Liu,
Instantons in a ferromagnetic spin chain with biaxial anisotropy,
Phys. Rev. B 79, 014415 (2009).
  96 A. C. Ji, W. M. Liu, J. L. Song, F. Zhou,
Dynamical creation of fractionalized vortices and vortex lattices,
Phys. Rev. Lett. 101, 010402 (2008).  Cited 25 times in Web of Science
  97 J. M. Zhang, W. M. Liu, D. L. Zhou,
Mean-field dynamics of a Bose Josephson junction in an optical cavity,
Phys. Rev. A 78, 043618 (2008).  Cited 15 times in Web of Science
  98 B Li, X. F. Zhang, Y. Q. Li, Y. Chen, W. M. Liu,
Solitons in Bose-Einstein condensates with time-dependent atomic scattering length in an expulsive parabolic and complex potential,
Phys. Rev. A 78, 023608 (2008).  Cited 25times in Web of Science
  99 J. M. Zhang, W. M. Liu, D. L. Zhou,
Cavity QED with cold atoms trapped in a double-well potential,
Phys. Rev. A 77, 033620 (2008).  Cited 28 times in Web of Science
  100 X. F. Zhang, Q. Yang, J. F. Zhang, X. Z. Chen, W. M. Liu,
Controlling soliton interactions in Bose-Einstein condensates by synchronizing the Feshbach resonance and harmonic trap,
Phys. Rev. A 77, 023613 (2008).  Cited 40 times in Web of Science
  101 Y. Y. Zhang, J. P. Hu, B. A. Bernevig, X. R. Wang, X. C. Xie, W. M. Liu,
Quantum blockade and loop currents in graphene with topological defects,
Phys. Rev. B 78, 155413 (2008).  Cited 20 times in Web of Science
  102 P. B. He, Z. D. Li, A. L. Pan, Q. Wan, Q. L. Zhang, R. X. Wang, Y. G. Wang, W. M. Liu, B. S. Zou,
Theory of ferromagnetic resonance in magnetic trilayers with a tilted spin polarizer,
Phys. Rev. B 78, 054420 (2008).  Cited 12 times in Web of Science
  103 D. L. Wang, X. H. Yan, W. M. Liu,
Localized gap-soliton trains of Bose-Einstein condensates in an optical lattice,
Phys. Rev. E 78, 026606 (2008).  Cited 12 times in Web of Science
  104 A. C. Ji, X. C. Xie, W. M. Liu,
Quantum magnetic dynamics of polarized light in arrays of microcavities,
Phys. Rev. Lett. 99, 183602 (2007).  Cited 40 times in Web of Science
  105 P. B. He, Q. Sun, P. Li, S. Q. Shen, W. M. Liu,
Magnetic quantum phase transition of cold atoms in an optical lattice,
Phys. Rev. A 76, 043618 (2007).  Cited 45 times in Web of Science
  106 Z. D. Li, Q. Y. Li, L. Li, W. M. Liu,
Soliton solution for the spin current in ferromagnetic nanowire,
Phys. Rev. E 76, 026605 (2007).  Cited 45 times in Web of Science
  107 A. Abliz, H. J. Gao, X. C. Xie, Y. S. Wu, W. M. Liu,
Entanglement control in an anisotropic two-qubit Heisenberg XYZ model with external magnetic fields,
Phys. Rev. A 74, 052105 (2006).  Cited 35 times in Web of Science
  108 E. Kengne, W. M. Liu,
Exact solutions of the derivative nonlinear Schrödinger equation for a nonlinear transmission line,
Phys. Rev. E 73, 026603 (2006).  Cited 30 times in Web of Science
  109 L. Li, B. A. Malomed, D. Mihalache, W. M. Liu,
Exact soliton-on-plane-wave solutions for two-component Bose-Einstein condensates,
Phys. Rev. E 73, 066610 (2006).  Cited 45 times in Web of Science
  110 E. Kengne, S. T. Chui, W. M. Liu,
Modulational instability criteria for coupled nonlinear transmission lines with dispersive element,
Phys. Rev. E 74, 036614 (2006).  Cited 17 times in Web of Science
  111 Z. X. Liang, Z. D. Zhang, W. M. Liu,
Dynamics of a bright soliton in Bose-Einstein condensates with time-dependent atomic scattering length in an expulsive parabolic potential,
Phys. Rev. Lett. 94, 050402 (2005).  Cited 140 times in Web of Science
  112 Z. W. Xie, Z. X. Cao, E. I. Kats, W. M. Liu,
Nonlinear dynamics of a dipolar Bose-Einstein condensate in optical lattice,
Phys. Rev. A 71, 025601 (2005).  Cited 30 times in Web of Science
  113 G. P. Zheng, J. Q. Liang, W. M. Liu
 Phase diagram of two-species Bose-Einstein condensates in an optical lattice,
Phys. Rev. A 71, 053608 (2005).  Cited 30 times in Web of Science
  114 Z. D. Li, P. B. He, L. Li, J. Q. Liang, W. M. Liu,
Magnetic soliton and soliton collisions of spinor Bose-Einstein condensates in an optical lattice,
Phys. Rev. A 71, 053611 (2005).  Cited 40 times in Web of Science
  115 L. Li, Z. D. Li, B. A. Malomed, D. Mihalache, W. M.Liu,
Exact soliton solutions and nonlinear modulation instability in spinor Bose-Einstein condensates,
Phys. Rev. A 72. 033611 (2005).  Cited 52 times in Web of Science
  116 H. Li, S. Q. Shen, J. Q. Liang, W. M. Liu
Quantum dynamics of a vortex in a Josephson,
Phys. Rev. B 72. 014546 (2005).
  117 L. H. Liang, F. Liu, D. X. Shi, W. M. Liu, X. C. Xie, H. J. Gao, 
Nucleation and reshaping thermodynamics of Ni as catalyst of carbon nanotubes,
Phys. Rev. B 72, 035453 (2005).  Cited 10 times in Web of Science
  118 Z. F. Jiang, R. D. Li, S. C. Zhang, W. M. Liu,
Semiclassical time evolution of the holes from Luttinger Hamiltonian,
Phys. Rev. B 72, 045201 (2005) Cited 40 times in Web of Science
  119 P. B. He, W. M. Liu
Nonlinear magnetization dynamics in a ferromagnetic nanowire with spin current,
Phys. Rev. B 72, 064410 (2005).
  Cited 35 times in Web of Science
  120 P. B. He, X. C. Xie, W. M. Liu
Domain-wall resonance induced by spin-polarized current in metal thin films with stripe structures,
Phys. Rev. B 72, 172411 (2005).  Cited 25 times in Web of Science
  121 Z. W. Xie, W. P. Zhang, S. T. Chui, W. M. Liu,
Magnetic solitons of spinor Bose-Einstein condensates in optical lattice,
Phys. Rev. A 69, 053609 (2004).  Cited 30 times in Web of Science
  122 G. R. Jin, W. M. Liu,
Collapses and revivals of exciton emission in a semiconductor microcavity: Detuning and phase-space filling effects,
Phys. Rev. A 70, 013803 (2004).  Cited 20 times in Web of Science
  123 Z.W. Xie, W. M. Liu,
Superfluid-Mott-insulator transition of dipolar bosons in optical lattice,
Phys. Rev. A 70, 045602 (2004).  Cited 17 times in Web of Science
  124 L. H. Liang, C. M. Shen,S. X. Du, W. M. Liu, X. C. Xie, H. J. Gao,
Increase in thermal stability induced by organic coatings on nanoparticles,
Phys. Rev. B 70, 205419 (2004).  Cited 10 times in Web of Science
  125 Z. D. Li, J. Q. Liang, L. Li, W. M. Liu,
Soliton solution of continuum magnetization equation in a conducting ferromagnet with a spin-polarized current,
Phys. Rev. E 69, 066611 (2004).  Cited 35 times in Web of Science
  126 J. J. Liang, J. Q. Liang, W. M. Liu,
Quantum phase transition of condensed bosons in optical lattices,
Phys. Rev. A 68, 043605 (2003).  Cited 45 times in Web of Science
  127 Z. D. Li, L. Li, W. M. Liu, J. Q. Liang, T. Ziman,
Exact soliton solution and inelastic two-soliton collision in a spin chain driven by a time-dependent magnetic field,
Phys. Rev. E 68, 036102 (2003).  Cited 25 times in Web of Science
  128 W. M. Liu, W. B. Fan, W. M. Zheng, J. Q. Liang, S. T. Chui,
Quantum tunneling of Bose-Einstein condesates in optical lattices under gravity,
Phys. Rev. Lett. 88, 170408 (2002).  Cited 120 times in Web of Science
  129 W. M. Liu, J. Q. Liang, S. T. Chui,
Intrinsic localized states and nonlinear excitations of Bloch electrons in electric fields,
Phys. Rev. B 65, 033102 (2002).  Cited 10 times in Web of Science
  130 W. M. Liu, B. Wu, X. Zhou, D. K. Campbell, Q. Niu,
Interacting domain walls in an easy plane ferromagnet,
Phys. Rev. B 65, 172416 (2002).  Cited 25 times in Web of Science
  131 W. D. Li, X. J. Zhou, Y. Q. Wang, J. Q. Liang, W. M. Liu,
Time evolution of relative phase in two component Bose-Einstein condensates with a coupling drive,
Phys. Rev. A 64, 015602 (2001).  Cited 35 times in Web of Science
  132 W. M. Liu, B. Wu, Q. Niu,
Nonlinear effects in interference of Bose-Einstein condesates,
Phys. Rev. Lett. 84, 2294 (2000).  Cited 155 times in Web of Science
  133 Q. Niu, X. D. Wang, L. Kleinman, W. M. Liu, D. M. C. Nicholson, G. M. Stocks,
Adiabatic dynamics of local spin moments in itinerant magnets,
Phys. Rev. Lett. 83, 207 (1999).  Cited 80 times in Web of Science
  134 W. M. Liu, W. S. Zhang, F. C. Pu, X. Zhou,
Nonlinear magnetization dynamics of the classical ferromagnet with two single-ion anisotropy in an external magnetic field,
Phys. Rev. B 60, 12893 (1999).  Cited 35 times in Web of Science
Students 10 PhDs and 1 Masters graduated. 7 PhD students, 7 Master students at study.
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