张智明教授简介

作者: 时间:2024年08月29日 11:24 点击数:

张智明教授简历

 

 

基本信息

张智明,男,19566月生。理学博士、教授、博士生导师。


担任或曾担任专业委员会委员情况 

中国物理学会量子光学专业委员会委员;

中国密码学会量子密码专业委员会委员;

中国通信学会量子通信专业委员会委员。


担任或曾担任学术刊物编委情况

《量子光学学报》、《量子电子学报》、《光子学报》等刊物编委。

 

受教育情况

                1996.09-1999.12: 在中国科学院安徽光机所学习(在职),获理学博士学位.

    1978.09-1982.01: 在兰州大学物理系理论物理专业学习, 获理学硕士学位.

    1975.09-1978.07: 在兰州大学物理系半导体物理专业学习,获理学学士学位。

 

工作经历

                1982.01-1985.03: 在中国科学院安徽光机所工作, 任助理研究员。

    1985.03-1998.10: 在西安交通大学物理系工作, 先后任讲师、副教授、教授。

     1998.10-2006.03: 在上海交通大学物理系工作, 任教授、博士生导师。

    2006.03-2021.07:在华南师范大学信息光电子科技学院工作,任教授、博士生导师;

曾兼任华南师范大学学术委员会委员;曾兼任华南师范大学教学督导委员会委员。

2021.07从华南师范大学退休。

                2021.09-    : 在广东理工学院工作,任教授、大学物理实验中心主任。

     

国外、境外工作经历(不含参加会议)

    1993.10-1994.04: 德国埃森大学物理系,高级访问学者.

    2000.09-2000.12: 香港浸会大学物理系,访问研究学者.

    2001.02-2001.08: 台湾新竹交通大学光电研究所,客座教授.

    2001.09-2002.09: 德国马普量子光学研究所,客座研究教授.

    2006.09.01-30:  巴基斯坦CIIT大学量子物理研究中心,客座教授.

                2007.12-2008.03: 新加坡国立大学量子技术中心,客座研究员.

     2009.07-2009.09:新加坡国立大学量子技术中心,客座研究员.

 

教学情况:

任教以来, 先后讲授过下列本科生和研究生课程:

大学物理, 物理实验, 原子物理学, 数学物理方法, 热力学与统计物理学,电动力学

量子力学,量子光学, 激光原理,激光物理学, 原子与分子光谱学激光光谱学

光子学基础,量子信息导论,量子通信与量子计算等。


研究领域及成果概况

主要研究领域为量子光学、量子信息、冷原子物理。先后主持国家自然科学基金重大研究计划项目1项;国家自然科学基金面上项目7项;主持或参与其他省部级以上科研项目7项(详见附件1:主要科研项目目录)。主要成果包括:(1)出版专著1部:《量子光学》(独著,2015年2月,科学出版社),被国内许多高校选作研究生教材或参考书;(2)主编教材1部:《大学物理实验》(主编,2023年8月,北京邮电大学出版社)。(3)在物理学著名期刊Physical Review Letters, Physical Review A, Optics Letters, Optics Express等上面发表科研论文220余篇(详见附件2:主要科研论文目录),曾应邀为多家学术期刊撰写综述评论性文章。(4)先后培养博士研究生15名、硕士研究生50余名。(5)先后获得若干科研奖励与荣誉称号(详见附件3:科研获奖与荣誉称号)。

 

附件1:主要科研项目目录:

1) 2001.1-2003.12:主持国家自然科学基金面上项目:“原子相干性和质心运动量子性对微脉塞性质的影响” (No.10074046, 2001.1-2003.12,14万) ;

2) 2002.1-2004.12:主持国家自然科学基金面上项目:“超冷原子泵浦的双模微脉塞之研究” (No.60178001, 2002.1-2004.12,12万) ;

3) 2006.1-2008.12:主持国家自然科学基金面上项目:“利用类微脉塞系统制备、传输和测量光场和原子的量子态”(No.60578055, 2006.1-2008.1224万) 

4)      2007-2011:参加国家“973”计划项目:“基于核自旋量子调控的固态量子计算研究”(No.2007CB925204, 2007-2011, 85万/4);

5)     2008.7-2010.12 :参加广州市科技支撑计划项目:“实用量子保密通信系统光端机的研制”(刘颂豪,张智明,王金东等, No.2008Z1-D501, 2008.7-2010.12,30万);

6)     2009-2010:参加国家“973”计划项目:“量子信息基本逻辑单元和关键器件的研究” (No.2009CB929600) 之课题四:“基于表面等离子体的量子信息传输单元研究”(No.2009CB929604,2009-2010, 20万);

7) 2010.1-2012.12 :主持国家自然科学基金面上项目:“基于交叉克尔型非线性相互作用的量子操控”(No. 609780092010.1-2012.12 32) 

8) 2011-2015:参加国家“973”计划重大和主题项目: “全固态量子芯片研究”(No. 2011CBA00200)之课题三: “基于表面等离子体的量子信息传输单元研究” (No. 2011CBA00203,2011-2015,30万);

9) 2012.1-2014.12: 主持国家自然科学基金重大研究计划项目: “可控波形单光子的产生、探测及其在量子密钥分发中的应用”(No.91121023, 2012.1-2014.12, 80万);

10)     2013-2017: 参加国家“973”计划项目:“基于自旋量子调控的固态量子计算研究”(No. 2013CB921800)之课题四: “基于自旋的量子计算原理和方法的理论研究” No. 2013CB921804);

11) 2013.1-2015.12: 主持教育部高等学校博士学科点专项科研基金项目(博导类):“基于魔幻态的容错量子计算通用性研究”(No. 20124407110009, 2013.1-2015.1212)

12)     2013-2015: 参加教育部“长江学者和创新团队发展计划”项目:“量子物理与量子操控研究” 

  (No. IRT12432013-2015300万,骨干成员)。

13) 2014.1-2017.12: 主持国家自然科学基金面上项目:“冷原子中四波混频产生的纠缠光子对的时空波形特性(No. 61378012, 2014.1-2017.12 80) 

14) 2016.1-2019.12: 主持国家自然科学基金面上项目:“腔量子电动力学与腔光力学的融合”(No. 11574092, 2016.1-2019.12,直接经费62万,合计73.88) 

15) 2018.1-2021.12:主持国家自然科学基金面上项目:“基于光场的非经典效应和非线性效应的参量估算”,(No. 617750622018.1-2021.12 ,直接经费70)

 

 

附件2:主要科研论文目录:

1999年以前发表的主要论文目录:

1. 张智明,“双光子光学双稳态和双光子激光器的全量子方程解”,《量子电子学报》, 1984, 1(1): 5-10.

2. 何林生,张智明,“多光子跃迁的量子理论”,《量子电子学报》, 1986, 3(1): 48-56.

3. Zhi-ming Zhang, Lei Xu, Jin-lin Chai, and Fu-li Li, "A new kind of higher-order squeezing of radiation field", Phys.Lett.A, 1990, 150(1): 27-30.

4. Chin-Lin Chai, Fu-Li Li, and Zhi-Ming Zhang, "Effect of atomic cooperation on emission spectra in a cavity", Phys.Lett.A, 1990, 150(2): 85-88.

5. Zhi-ming Zhang, Lei Xu, and Jin-lin Chai, "Squeezing in the N-photon interaction of two atoms with a squeezed light", Phys.Lett.A, 1990, 151(1,2): 65-68.

6. Zhi-ming Zhang, Lei Xu, Fu-li Li, and Jin-lin Chai, "Long-time behaviour of field fluctuation in the M-photon Jaynes-Cummings model", Z.Phys.B, 1991,84: 329-331.

7. Lei Xu, Zhi-ming Zhang, and Jin-lin Chai, "Interaction of two two-level atoms with a squeezed light",  J.Opt.Soc.Am.B, 1991, 8 (5): 1157-1162.

8. Chin-lin Chai, Fu-li Li, and Zhi-ming Zhang,, "Amplitude-squared squeezing of field in interaction of an M-level atom with a single mode of cavity field", J.Phys.B: At.Mol.Opt.Phys. 1991, 24 : 3309-3313.

9. 李福利,柴晋临,张智明"构造光子数湮没算子高次幂的正交本征态的新方法", 《物理学报》, 1991, 40 (7): 1058-1064.

10. Lei Xu, Zhi-ming Zhang, and Zhen-Fei Luo, "Emission spectrum of a pair of two-level atoms in a cavity", J.Phys.B: At.Mol.Opt.Phys. 1992, 25 : 3075-3084.

11. H.X.Meng, C.L.Chai, and Z.M.Zhang, "Phase dynamics of coherent light in the M-photon Jaynes- Cummings model", Phys.Rev.A, 1992, 45 (3): 2131-2134.

12. 徐磊,罗振飞,徐至展,张智明,"原子间偶极相互作用对其在腔场中辐射谱的影响",《光学学报》, 1992, 12 (12): 1089-1093.

13. Zhi-Ming Zhang, Lei Xu, and Zhen-Fei Luo, "Effects of dipole-dipole interaction on atomic dynamics in the M-photon processes", Phys.Rev.A, 1993, 47 (2): 1557-1559.

14. H.X.Meng, C.L.Chai, and Z.M.Zhang, "Phase and squeezing properties of two copropagating fields in a Kerr medium", Phys.Rev.A, 1993, 48 (4): 3219-3224.

15. Zhen-Fei Luo, Zhi-Zhan Xu, Lei Xu, and Zhi-Ming Zhang, "Two-atom emission spectrum including dispersion force", J.Phys.B: At.Mol.Opt.Phys., 1993, 26: 1301-1305.

16. Lei Xu, Zhen-Fei Luo, and Zhi-Ming Zhang, "Validity of the effective Hamiltonian for the degenerate Raman Process",  J.Phys.B: At.Mol.Opt.Phys., 1994, 27: 1649-1656.

17. Lei Xu, and Zhi-Ming Zhang, "Modified effective Hamiltonian for the degenerate Raman process", Z.Phys.B, 1994, 95: 507-510.

18. Lin-sheng He, Zhi-ming Zhang, and Hai-he Jiang, "Source-radiation field relation for two-photon emission of a two-level atom", Phys.Lett.A, 1995, 200: 149-155.

19. Z.M.Zhang et al., "Amplitude Nth-power squeezing in a normal squeezed vacuum", Chin.J.Lasers B, 1996, 5 (1): 61.

20. Zhiming Zhang, Jinfang Pan, Lei Xu, "Effects of ac Stark shift on the amplitude Nth-power squeezing in the degenerate Raman process",《光子学报》, 1996, 25(5): 385-393.

21. 张智明,"非简并Raman耦合模型的改进型有效哈密顿量",《量子光学学报》, 1996, 2(1): 32-36.

22. 张智明,何林生,"双原子非简并Raman过程中原子与腔场的动力学", 《量子电子学报》, 1996, 13(3): 239-244.

23. 张智明,何林生,"两个原子与双模腔场的多光子相互作用-场和原子的动力学性质", 《光学学报》, 1996, 16(9): 1268-1270.    

24. 何林生,冯勋立,吴世熊,张智明,夏宇兴,"压缩真空库场中二能级原子的非简并双光子荧光谱",《物理学报》 , 1998, 47(2): 219-231.   

25. 张智明, 何林生, 周士康,"热库中有源LC电路的量子理论", 《量子电子学报》, 1998,15(3): 241-244

26. 张智明,何林生, 周士康,"有源RLC电路的量子化", 《量子电子学报》,1998,15(4): 348-351

27. Zhi-Ming ZhangLin-Sheng He, Shi-Kang Zhou, "A quantum theory of an RLC circuit with a source",  Phys.Lett.A,1998,244(4): 196-200

28. Zhi-Ming ZhangLin-Sheng He, "Quantum theory of the micromaser with ultra-cold -type three-level atoms”, Opt.Commun.1998, 157(1/6): 77-82.

 

1999年以后发表的主要论文目录如下(按年度排列):

 

1999年

29. Z.M.Zhang et al.,"Quantum theory of the two-photon mazer: Emission probability", Phys.Rev.A. 1999, 59(1): 808-813.

30. Z.M.Zhang et al.,"Quantum theory of the two-photon mazer: general theory and emission probability ", Chin.Phys.Lett.1999, 16(1): 26-28.

31. Z.M.Zhang et al., "Interaction of a -type three-level atom with a two-mode field and a two-mode Raman-coupled interaction", Acta Phisica Sinica(Overseas Edition),1999, 8(2): 136-142.

32. 张智明等,研究混沌系统同步问题的一种解析方法”, 《光电子.激光》, 1999, 10(3): 264-266.

33. Z.M.Zhang et al., “Transmission probability of a ultracold three-level atom through a micromaser cavity”, Chin.Phys.Lett.1999, 16(8): 568-570.

34. Z.M.Zhang et al., “Photon Statistics of the micromaser with ultra-cold -type three-level atoms”, Acta Phisica Sinica(Overseas Edition), 1999, 8(8): 571-576

35. Z.M.Zhang et al., "Quantum theory of the micromaser with ultra-cold cascade three-level atoms”, J.Phys.B: At.Mol.Opt.Phys. 1999, 32(16): 4013-4028.

36. Z.M.Zhang et al., “Velocity selection for ultracold three-level atoms using two micromaser cavities", Phys.Rev.A, 1999, 60(4): 3321-3323. 

 

2000

37. Z.M.Zhang et al., "Effects of dissipations on fluctuations in an RLC circuit with a source in a thermal bath", Chin. J. Lasers B: 20009(1): 65-70.

38. 张智明,“超冷三能级原子注入微脉塞的光谱性质”, 《上海交大学报》2000, 34(8): 1101-1104.

39. Z.M.Zhang et al., “Quantum theory of the 3-level-atom mazer”; in Frontiers of Laser Physics and Quantum Optics, Edited by Z.Z.Xu, S.W.Xie, S.Y.Zhu and M.O.Scully (Springer, Berlin, 2000), pp.623-626.

40. Z.M.Zhang et al.,  "Quantum theory of the micromaser with ultracold cascade three-level atoms II: Spectral properties". J.Phys.B: At.Mol.Opt.Phys. 2000, 33(11): 2125-2133. 

41. Z.M.Zhang et al.,  "Spectrum of the micromaser injected with -type three-level atoms", Chinese Physics, 2000, 9(12): 900-904.

42. K.Q.Chu, W.Q.Liang, and Z.M.Zhang, Effects of the atomic coherence on the spontaneous emission of a V-type three-level atom ", Acta Photonica Sinica, 2000,  29(11): 982-984.

 

2001

43. Z.M.Zhang et al., “Atomic coherence in the micromaser injected with slow V-type three-level atoms: Emission probability”, Chin.Phys.Lett.  2001, 18(2): 223-224.

44. W.Q.Liang, Z.Q.Niu, Z.M.Zhang, and S.W.Xie,  V-type three-level-atom mazer with atomic coherence: Velocity selection”, J.Phys.B: At.Mol.Opt.Phys. 2001, 34(22): 4427-4436.

45. 梁文青, 张智明,谢绳武,“超冷V型三能级原子注入的微波激射:原子相干性对腔场光子统计的影响”, 物理学报, 2001, 50(12): 2345-2355.

 

2002

46. Z.M.Zhang et al., “Dynamics of an ultracold cascade three-level atom interacting with a two-mode cavity field”, J. Opt. B: Quant. and Semiclass. Opt.  2002, 4(1): 30-36.

47. J.Xiong, K.Q.Chu, and Z.M.Zhang, “Transmission probability of an ultracold atom in presence of atomic coherence”, Chin. Phys. Lett. 2002, 19(3): 331-333. 

48. 储开芹, 梁文青, 张智明,“超冷V型三能级原子注入的微脉塞的光谱性质”,《光学学报》, 2002, 225):523-529.  

49. J.Xiong and Z.M.Zhang, “Emission probability and photon statistics of a coherently driven mazer ”, J.Phys.B: At.Mol.Opt.Phys. 2002, 35(9): 2159-2172. 

50. 熊锦,牛中奇,张智明原子质心运动的量子效应对光场量子噪声压缩的影响《物理学报》20025110),2245-2248.

51. J.Xiong and Z.M.Zhang, “Emission probability of the cascade three-level-atom mazer with injected atomic coherence”, Chin. Phys. Lett. 2002, 19(11): 1621-1624.

 

2003

52. Z.M.Zhang,  A simple scheme for measuring the Wigner function of cavity fields”, Chin. Phys. Lett. 2003, 20(2): 227-229.

53. X.L.Feng, Z.M.Zhang et al.,  “Entangling distant atoms by interference of polarized photons”, Phys.Rev.Lett. 2003, 90(21): 217902.

54. P.Lougovski, E.Solano, Z.M.Zhang et al., “Fresnel representation of the Wigner Function: An Operational approach” , Phys.Rev.Lett. 2003, 91(1): 010401.

55. J.Xiong and Z.M.Zhang, Effects of the center-of-mass motion on the population trapping of ultracold atoms, Chin. Phys. Lett. 2003, 20(11): 1950-1953.

56. W.Q.Liang, Z.M.Zhang, and S.W.Xie,Two-mode mazer injected with V-type three-level atoms, Chinese Physics, 2003, 12(12): 1399-1413. 

 

2004

57.  Z.M.Zhang, “利用微脉塞重构腔场的Wigner函数”,《物理学报》2004531):70-74.

58.  Z.M.Zhang,  “Measuring the Wigner functions of two-mode cavity fields and testing the Bell's inequalities”, Chin. Phys. Lett. 2004, 21(1): 5-8.

59. 张智明,“微脉塞研究进展”,《量子电子学报》2004, 21(2): 224-236.(应邀撰写的综述评论性文章)。

60.  Zhi-Ming Zhang, Recent progress of quantum-state reconstruction of electromagnetic fields, Mod.Phys.Lett.B, 2004, 18(10): 393-409.(应邀撰写的综述评论性文章)。

61. C.H.Yuan and Z.M.Zhang,Reconstructing the Wigner function of field-modes in two spacially-separated cavities, Mod.Phys.Lett. B, 2004, 18(23):1189-1194.

 

2005

62. C.H.Yuan and Z.M.ZhangTransmission probability of the two-mode MAZER with injected atomic coherence,Chinese Physics200514(1): 144-148.

63. 严明,罗售余,张智明,“连续CO2激光脉冲制作长周期光纤光栅的研究”,《光子学报》2005345):659-661

64. 胡明明,欧永成,张智明,“Emission probability of a non-degenerate two-photon mazer,《光子学报》20053412):1872-1875

65. 欧永成,袁春华,张智明,“Quantum state transfer between two distant atoms by connecting two cavities via optical fibres”Chin.Phys.Lett., 2005,22(12): 3001-3004.

 

2006

66. 欧永成,袁春华, 张智明, “Preparation of the entanglement states with distant atoms trapped in separate cavities”, J.Phys.B: At.Mol.Opt.Phys. 2006, 39(1): 7-15.

67. 袁春华,欧永成, 张智明, “A scheme for preparation of W-type entangled coherent state of three cavity field”, Chin. Phys. Lett., 2006, 23(7): 1695-1697.

68. 袁春华,欧永成, 张智明, “Entanglement swapping with atoms separated by long distance ”, Chin.Phys., 2006, 15(8):1793-1797.

69. 袁春华,欧永成, 张智明, Generation of quantum switch and nonlocal fields with an external field in a high quality dispersive cavity, Opt.Commun., 2006, 267, 282-285.

70. 陈银花,於亚飞,张智明,“Entangled states used in remote information concentration and their properties, Chin.Phys.Lett.2006,,23(12): 3158-3160.

71. 张智明, One-atom maser and One-atom laserExperimental platforms for cavity quantum electrodynamics, 量子光学学报2006, 12(4): 194-206. (应邀撰写的综述评论性文章)。

 

2007

72. Zhi-Ming Zhang*Jian Yangand Ya-Fei Yu,“A scheme for generating entangled squeezed states based on cavity QED, Chin.Phys.Lett., 2007, 24(2): 352-354.

73. Z.M.Zhang*, A. H. Khosa, M. Ikram, and M. S. Zubairy,Generating entangled states of continuous variables via cross-Kerr nonlinearity, J.Phys.B: At.Mol.Opt.Phys. 2007, 40(10): 1917-1924.

74. Jian-lang Li, Ken-ichi Ueda, Mitsuru Musha, Akira Shirakawa, and Zhi-ming Zhang , “Converging-axicon-based radially polarized ytterbium fiber laser and evidence on the mode profile inside the gain fiber ”, Opt. Lett., 2007, 32(11): 1360-1362.

75. Ming Yan, Shouyu Luo, Li Zhan, Zhiming Zhang, Yuxing Xia, “Triple-wavelength switchable Erbium-doped fiber laser with cascaded asymmetric exposure long-period fiber gratings ”, Opt Express, 2007, 15(11): 3685-3691.

 

2008

76. Zhi-Ming Zhang*Jian Yangand Ya-Fei Yu,“Generating entanglement of photon-number states with coherent light via cross-Kerr nonlinearity”,J.Phys.B: At.Mol.Opt.Phys.2008, 41(2): 025502. 

77. Zhi-Ming Zhang* and Ya-Fei Yu, Analytic solutions for degenerate Raman-coupled model”, Chin.Phys. 2008,17(4): 1242-1247.

78. Jian Yang, Ya-Fei Yu, Zhi-Ming Zhang*, and Song-Hao Liu, “Realization of universal quantum cloning with SQUID qubits in a cavity”, Phys.Rev.A, 2008, 77(3): 034302.

79. 杨健,任珉,於亚飞,张智明*,刘颂豪,利用交叉克尔非线性效应实现纠缠转移”,《物理学报》200857(2): 887-891.

80. Fa-Qiang Wang and Zhi-Ming Zhang*, “Phase Evolution of Coherent Light in a Simple Polariton Model”, Chin.Phys.Lett., 2008, 25(3): 821-824.2007CB925204

81. 於亚飞,张智明*,束缚纠缠态量子秘密共享的不安全性分析,《光学学报》2008283):556-559.

82. Ming Yan, Shouyu Luo; Li Zhan; Yilei Wang; Yuxing Xia; Zhiming Zhang, “Step-changed period chirped long-period fiber gratings fabricated by CO2 laser”Opt.Commun., 2008, 281(10): 2784-2788.

83. Xin-Ding Zhang, Z.D. Wang, Liang-Bin Hu, Zhi-Ming Zhang,and Shi-Liang Zhu, , “Detecting unambiguously non-Abelian geometric phases with trapped ions”, New J.Phys., 2008, 10: 043031.

84. Ya-Fei Yu, Zhi-Ming Zhangand Guang-Can Guo, “Writing Quantum Data into One-Way Quantum Computer by Fusion Gate”, Int. J. Theor. Phys. (International Journal of Theoretical Physics), 2008471709-1712..

85. 艾凌艳,杨健,张智明*,“基于二维囚禁离子实现C-NOT门、交换门和相位门”,《物理学报》2008579):5589-5592.

86. Fa-Qiang Wang,Zhi-Ming Zhang*, and Rui-Sheng Liang,“Finite-time decoherence could be suppressed efficiently in a photonic crystal”, Phys.Rev.A, 2008,78(4), 042320. 

87. Fa-Qiang Wang, Zhi-Ming Zhang*, and Rui-Sheng Liang“Decoherence of two qubits in a non-Markovian reservoir without the rotating-wave approximation”, Phys.Rev.A, 200878 (6)062318.

88. 李静, 於亚飞,张智明*对线性光学簇态融和门的简化量子光学学报2008, 143):277-281

 

2009

89. AI Ling-Yan, DU GangZHU Shi-LiangZhi-Ming Zhang*, “Teleporting an Unknown Two-qubit Entangled State via Ion-Trap Systems” , Chin.Phys.Lett., 2009, 26(1): 014210

90. Fa-Qiang Wang, Zhi-Ming Zhang*, and Rui-Sheng Liang, “Decoherence of two-qubit system in a non-Markovian squeezed reservoir”, Chinese Physics B, 2009, 18(2): 597-603.

91. Ya-Fei Yu, Zhi-Ming Zhang*, “Proof for the insecurity of quantum secret sharing based on the Smolin bound entangled states”, Chinese Physics B, 2009, 18(4): 1342-1345.

92. Feng MeiYa-Fei Yu, Zhi-Ming Zhang*,Decoherence–free quantum memory for photonic state using atomic ensembles, Int.J.Quant.Inf. 2009, 7(4): 811-820.

93. DU Gang, LAI Bo-Hui, YU Ya-Fei,  and ZHANG Zhi-Ming*, “Schemes for Generating Cluster States via Cavity Systems”,  CHIN. PHYS. LETT. 2009, 26(10): 104201

94. Feng Mei, Mang Feng, Ya-Fei Yu, Zhi-Ming Zhang*, Scalable quantum information processing with atomic ensembles and flying photons,  Phys.Rev.A, 2009804):042319

95. Lin-Lin Xu, Ya-Fei Yu, Zhi-Ming Zhang*, “Scheme for the Preparation of Entanglement of Atomic Ensembles”, Int.J.Quant.Inf.2009, 7(8): 1459-1467

 

2010

96. Feng MeiYa-Fei Yu, Zhi-Ming Zhang*, “Deterministic quantum teleportation and information splitting via a peculiar W-class state”, Chin. Phys. B, 2010, 19(2): 020308

97. Dan-Dan Lv, Hong Lu, Ya-Fei Yu, Xun-Li FengZhi-Ming Zhang *,“Universal Quantum Cloning Machine in Circuit Quantum Electrodynamics”, Chin.Phys.Lett., 2010272):020302.

98. 赖柏辉, 杜刚, 於亚飞张智明*刘颂豪, 利用交叉克尔非线性产生四光子偏振态簇态”, 物理学报2010592):1017-1020.   

99. Haiyan LvYa-Fei Yu, Zhi-Ming Zhang*, ”One step implementation of an N-qubit quantum phase gate through a double Raman passage”, Chin. Phys. B, 2010, 19(3): 034205.

100Jin-Dong Wang, Zheng-JunWei, Hui Zhang, Xiao-Juan Qin, Xiao-Bao Liu, Zhi-Ming Zhang, Chang-Jun Liao and Song-Hao Liu, Efficient quantum key distribution via single-photon two-qubit statesJ.Phys.B: At.Mol.Opt.Phys.2010, 43(9): 095504. 

101. Feng Mei, Ya-Fei Yu, Xun-Li Feng, Shi-Liang Zhu, Zhi-Ming Zhang*,“Optical quantum computation with cavities in the intermediate coupling region”,Euro.Phys.Lett., 2010,91: 10001.

102. Jian-Qi Zhang, Lin-Lin Xu, Zhi-Ming Zhang*,“Creating W-type entangled states in quantum dot systems”,Phys.Lett.A,2010, 374: 3818-3822.

103. Li-Fang Zhao, Bo-Hui Lai, Feng Mei, Ya-Fei Yu, Xun-Li Feng, Zhi-Ming Zhang*“Generation of a four-particle entangled state via cross-Kerr nonlinearity”, Chin. Phys. B, 2010, 19(9): 094207.

104. Feng Mei, Ya-Fei Yu, Xun-Li Feng, Zhi-Ming Zhang*and C. H. Oh,“Quantum Entanglement Distribution With Hybrid Parity Gate”, Phys.Rev.A, 2010825) :052315.

 

2011

105. Zhien Lu, Zhi-Ming Zhang*“Defect solitons supported by the interface between simple lattices and superlattices”Physics Letters A 20113752023–2028.

106. Zhien Lu, Zhi-Ming Zhang*“Surface line defect solitons in square optical lattice”Optics Express 2011193): 2410-2416.

107. Zhien Lu, Zhi-Ming Zhang*“Defect solitons in parity-time symmetric superlattices”, Optics Express 20111912): 11457-11462.

108. Shi Yan-Li, Mei Feng, Yu Ya-Fei, Zhi-Ming Zhang*, “Controlled phase gate based on an electron floating on Helium”, Chin.Phys.Lett. 2011, 28(5): 050302.

109. Feng Mei, Shi-Liang Zhu, Xun-Li Feng, Zhi-Ming Zhang*, and C. H. Oh“Probing Half-odd Topological Number with Cold Atoms in a Non-Abelian Optical Lattice”, Phys.Rev.A, 2011842):023622.

110. Jian-Qi Zhang, Ya-Fei Yu, Zhi-Ming Zhang*, “An unconventional geometric phase gate with two nonresonant quantum dots trapped in a photonic crystal cavity”J.Opt.Soc.Am. B, 201128 8):1959-1963.

111. 范学涛,於亚飞,张智明*, “基于五离子最大纠缠态的优化隐形传态和超密集编码”,   量子光学学报, 2011, 172: 90-95.

112. LI Bin, FENG Xun-Li, Zhi-Ming Zhang*“Frequency up- and down- conversions in a two-mode cavity”光子学报, 2011408):1161-1165 

113. Li Yu-Ning,  Mei Feng,  Yu Ya-Fei,  Feng Xun-Li,  Zhang Zhi-Ming*“Long-distance quantum state transfer through cavity-assisted interaction” Chin. Phys. B, 2011, 20(11): 110305R.

114. Wang Xiao-Xia, Zhang Jian-Qi, Yu Ya-Fei, and Zhang Zhi-Ming*“Controlled phase gates based on two nonidentical quantum dots trapped in separate cavities”, Chin. Phys. B, 2011, 20(11): 110306.

115. Ai Ling-Yan, Shi Yan-Li, and Zhang Zhi-Ming*, Preparation of cluster states with trapped electrons on a liquid helium surface, Chin. Phys. B, 2011, 20(10): 100303.

 

2012

116. Feng Mei, Shi-Liang Zhu, Zhi-Ming Zhang*, C. H. Oh*, and N. Goldman*, “Simulating Z2 topological insulators with cold atoms in a one-dimensional optical lattice”,  Phys.Rev.A, 2012, 85(1): 013638.

117. Yan-Li ShiFeng MeiYa-Fei YuXun-Li FengZhi-Ming Zhang*“Generation of a genuine four-particle entangled state of trap ions”Quantum Information Processing, 2012, 11(1): 229-234.

118. Li-Yun Hu*, Fang Jia, and Zhi-Ming Zhang*, “Entanglement and nonclassicality of photon-added two-mode squeezed thermal state”, J. Opt. Soc. Am. B, 2012, 29(6): 1456-1464.

119. Li-Yun Hu* and Zhi-Ming Zhang*, "Nonclassicality and decoherence of photon-added squeezed thermal state in thermal environment", J. Opt. Soc. Am. B, 2012, 29(4): 529-537.

120. Li-Yun Hu*, Shuai Wang, and Zhi-Ming Zhang*, “Photon number distribution of two-mode squeezed thermal states by entangled state representation”, 2012, Chin. Phys. B, 2012, 21(6): 064207.

121. Li-Yun Hu* and Zhi-Ming Zhang*, “New approach for normalization and photon-number distributions of photon-added (-subtracted) squeezed thermal states”, Chin.Opt.Lett., 2012, 10(8): 082701.

122. Shi Hui-MinYu Ya-FeiZhang Zhi-Ming*, “ Three-qubit quantum-gate operations with a SQUID in a cavity” ,  Chin. Phys. B, 2012, 21(6):064205.

123. Ping Yang, Ping Zou, and Zhi-Ming Zhang*, “Adiabatic approximation in the ultrastrong-coupling regime of an oscillator and two qubits”, 2012, Phys.Lett.A, 376(45): 2977-2981.

124. Yuan-Yuan XuXun-Li Feng*and Zhi-Ming Zhang,“Improvement on controlled-controlled-NOT operation-based entanglement purification protocol”,Chin.Opt.Lett., 2012, 10(4): 042701.

125. Yan Long, Feng Xun-Li*, Zhang Zhi-Ming, Liu Song-Hao, “An Extra Phase for Two-Mode Coherent States Displaced in Noncommutative Phase Space”, 2012, Chin.Phys.Lett. , 29(4): 041102.

126. Ya-Fei Yu, Chuan-Jia Shan, Feng Mei, Zhi-Ming Zhang, “Simulation and detection of massive Dirac fermions with cold atoms in one-dimensional optical lattice”, 2012, Physica B, 407, 3839–3840.

127. C.Q. Wang, Y.F. Yu, and Z.M. Zhang, “Quantum gate operations in hybrid superconducting circuit”, Euro.Phys.J.D, 2012, 66(11):307.

128. 张智明*,“单原子操控-2012年诺贝尔物理学奖得主Haroche科学成就简介”,量子光学学报20121804):303-311

 

2013

129. Hu Li-Yun*, Fan Hong-Yi, Zhang Zhi-Ming, “New formulas for normalizing photon-added (-subtracted) two-mode squeezed thermal states”, Chin. Phys. B, 2013, 22(3): 034202.

130. Li-Yun Hu*, Zhi-Ming Zhang, “Statistical properties of coherent photon- added two-mode squeezed vacuum and its inseparability”, J. Opt. Soc. Am. B, 2013, 30(3): 518-529.

131. Hui Yan*, Kai-Yu Liao, Jian-Feng Li, Yan-Xiong Du, Zhi-Ming Zhang, and Shi-Liang Zhu*, “Bichromatic electromagnetically induced transparency in hot atomic vapors”, Phys.Rev.A, 2013, 87: 055401.

132. LI Shu-Qing, YU Ya-Fei*, ZHANG Zhi-Ming*, “Determining the state of a three-level atom by interaction with two radiation fields”, SCIENCE CHINA: Physics, Mechanics & Astronomy, 2013, 56(8): 1478 – 1486.

133.吴琴, 张智明*,“Kerr介质中耦合双原子的纠缠特性”,《物理学报》,20136217):174206.

134.程广展,梅锋,邹平,於亚飞,张智明*,“基于腔辅助相互作用的远距离信息传递”,《量子光学学报》2013193):212. 

135.於亚飞,张智明,“T型魔幻态纯化速度之研究”,《量子光学学报》2013194):330-334.

136.王进,魏正军,王赓,郭莉,王金东,张智明,郭健平,郭邦红,刘颂豪,“数字平均对红外单光子探测器中温度控制系统信噪改善比的影响”,《物理学报》,20136217):014203.


2014

137. 李艾莉,於亚飞,张智明*,“基于腔输入-输出过程的Bell态分析器和GHZ态分析器”, 《量子电子学报》2014, 31(1): 69-74.

138. Peng-Cheng Ma, Yin Xiao, Ya-Fei Yu, and Zhi-Ming Zhang*,“Microwave field controlled slow and fast light with a coupled system consisting of a nanomechanical resonator and a Cooper-pair box”, Optics Express, 2014, 22(3): 2621-2628.

139. Yin Xiao, Ya-Fei Yu and Zhi-Ming Zhang* ,Controllable optomechanically induced transparency and ponderomotive squeezing in an optomechanical system assisted by an atomic ensemble, Optics Express, 201422(15):17979-17989.

140. Wu Qin and Zhang Zhi-Ming*, “Entanglement of two two-level atoms trapped in coupled cavities with a Kerr medium”, Chin. Phys. B, 2014, 23(3): 034203

141. Yan Xiang,Yu Ya-Fei and Zhang Zhi-Ming*Generation of hyperentangled four-photon cluster state via cross-Kerr nonlinearityChin. Phys. B2014236):060306.

142. 刘瑞,於亚飞,张智明*,“利用冷原子系综制备窄线宽三光子频率纠缠态”,物理学报201463(14)144203.

143. Li-Yun Hu*, Hao-Liang Zhang, Yin-Quan Hu, Zhi-Ming Zhang, Enhancing entanglement of entangled coherent states by single-mode coherent superposition of photon subtraction and addition”,Optik, 2014, 125: 61-63.

144. Yan Xiang,Yu Ya-Fei and Zhang Zhi-Ming*,“Entanglement concentration for a non-maximally entangled four-photon cluster state”, Front.Phys. 20149 (5): 640-645.

145. Peng-Cheng Ma, Jian-Qi Zhang*, Yin Xiao, Mang Feng*, and Zhi-Ming Zhang*, Tunable double optomechanically induced transparency in an optomechanical system, Phys. Rev.A, 2014, 90:043825.

146. Zhao-Yue Dong, Ning-Na Yu, Zheng-Jun Wei, Jin-Dong Wang*, and Zhi-Ming Zhang*, An attack aimed at active phase compensation in one-way phase-encoded QKD systems, Eur.Phys.J.D201468: 230.

147. Kai-Yu Liao, Hui Yan*, Jun-yu He, Wei Huang, Zhi-Ming Zhang and Shi-Liang Zhu*, “Experimental Generation of Narrow-Band Paired Photons: from Damped Rabi Oscillation to Group Delay”, Chin. Phys. Lett. 31, 034205 (2014)

148. Kaiyu Liao, Hui Yan*, Junyu He, Shengwang Du, Zhi-Ming Zhang, and Shi-Liang Zhu*, “Subnatural-Linewidth Polarization-Entangled Photon Pairs with Controllable Temporal Length ”, Phys. Rev. Lett.2014112243602.

149. Sheng LiuChuan-Jia ShanZhi-Ming ZhangZheng-Yuan Xue*, Simulation of the Majorana equation in circuit QED”,Quant.Inf.Process. 2014, 13: 1813.

150. 吴向艳,徐艳玲,於亚飞* 张智明,“利用非稳定子态容错实现密集旋转操作”,物理学报201463(22)220304. 

151.Chen Wen-Fen, Wei Zheng-Jun*,  Guo Li, Hou Li-Yan, Wang Geng, Wang Jin-Dong , Zhang Zhi-Ming , Guo Jian-Ping, and Liu Song-Hao, Auto bias control system for the electro-optic modulator used in a quantum key distribution system”,Chin. Phys.B, 23 (2014) 000001.

152. Yu NingnaDong ZhaoyueWang Jindong* Wei ZhengjunZhang Zhiming,“Impact of spontaneous Raman scattering on quantum channel wavelength-multiplexed with classical channel in time domain”,Chin.Opt.Lett. 2014, 12(10)102703.

153. 王金东, 张智明*,“量子密钥分发系统的现实无条件安全性”,量子电子学报 2014,  31(4) 449-458 

154. 林婉,马鹏程,张智明*,“用纠缠cluster态完成两量子位的秘密共享”,中国科技论文在线: 201409-141.  

 

2015

155. Qin Wu, Jian-Qi Zhang, Jin-Hui Wu, Mang Feng, and Zhi-Ming Zhang*,“Tunable multi-channel inverse optomechanically induced transparency and its applications”,Optics Express, 2015, 23(14): 18534- 18547. 

156. Wu Qin, Xiao Yin, and Zhang Zhi-Ming*,“Entanglements in a coupled cavity–array with one oscillating end-mirror”,Chin. Phys.B, 20152410104208.

157. Feng Xiao-Min, Xiao Yin, Yu Ya-Fei, and Zhang Zhi-Ming*Ponderomotive squeezing and entanglement in a ring cavity with two vibrational mirrors, Chin. Phys.B, 20152405):050301. 

158. 郭永宾,肖银,於亚飞,张智明*,“非线性光机械系统中的双稳性与纠缠” ,光学学报, 2015, 35(10):1027002.

159.陈俊,於亚飞*张智明,“利用信息流方法优化多激发自旋链中的量子态传输”, 物理学报,2015,64(16):160305.

160. 杜亚男,解文钟,金璇,王金东*,魏正军,秦晓娟,赵峰,张智明,“基于弱相干光源测量设备无关量子密钥分发系统的误码率分析” ,物理学报,2015,64(11):110301.

161. Ping Zou*, Zhi-Ming Zhang*, and Wei Song“Direct measurement of general quantum states using strong measurement”,Phys. Rev.A, 2015, 91: 052109.

162. Ping Zou, Zhi-Ming Zhang*,“Robust quantum gates between trapped ions using shaped pulses”, Phys.Lett.A, 2015, 379: 3045-3049. 

163. Hui Yan*, Kaiyu Liao, Zhitao Deng, Junyu He, Zheng-Yuan Xue, Zhi-Ming Zhang, and Shi-Liang Zhu,Experimental observation of simultaneous wave and particle behavior in a narrowband single-photon wave packet, Phys. Rev.A, 2015, 91: 042132.

 

2016

164. Kai-Le SunJun ChenFa-Qiang WangYa-Fei YuZhang Zhi-Ming*Entanglement Dynamics of Two Spins in Initially Correlated Wheel-Shaped Spin Baths”,Int. J. Theor. Phys., 2016, 55(2): 730.

165. Qin Wu, Yin Xiao, and Zhi-Ming Zhang*,“Stationary entanglement between two nanomechanical oscillators induced by Coulomb interaction”,Chin. Phys.B, 20162501):014203

166. Chao-Ping Wei, Xiao-Yu Hu, Ya-Fei Yu, and Zhi-Ming Zhang* Phase sensitivity of two nonlinear  interferometers with inputting entangled coherent states Chin. Phys.B, 2016254):040601.

167. Xiao-Yu Hu, Chao-Ping Wei, Ya-Fei Yu*, and Zhi-Ming Zhang*,“Enhanced phase sensitivity of an SU(1,1) interferometer with displaced squeezed vacuum light”,Front. Phys., 201611(3), 114203. 

168. Qiu-Hua Cai, Yin Xiao, Ya-Fei Yu, and Zhi-Ming Zhang*,“Mechanical squeezing and photonic anti-bunching in a coupled two-cavity optomechanical system”,Optics Express, 2016, 24(18): 20036-20048. 

169. 陈蕴哲,张智明*,“双模双腔光力系统中的机械模冷却”,中国科技论文在线: 201604-234

170. Jindong Wang*,  Xiaojuan Qin,  Yinzhu Jiang,  Xiaojing Wang,  Liwei Chen,  Feng Zhao,  Zhengjun Wei, and Zhiming Zhang,“Experimental demonstration of polarization encoding quantum key distribution system based on intrinsically stable polarization-modulated units”,Optics Express, 2016, 24(8): 8302

171. Jindong Wang*, Hong Wang, Xiaojuan Qin, Zhengjun Wei, and Zhiming Zhang, “The countermeasures against the blinding attack in quantum key distribution”, Eur. Phys. J. D201670: 5.

172. Yadong Wu,  Jian Zhou,  Xinbao Gong, Ying Guo,  Zhi-Ming Zhang, and Guangqiang He* Continuous-variable measurement-device-independent multipartite quantum communication

Phys. Rev.A, 2016 932): 022325.

173. Zitong Xiong, Jian Ruan, Rongyu Li, Zhiming Zhang, and Guangqiang He*, Soliton formation with controllable frequency line spacing using dual pumps in a microresonator, Chin. Opt. Lett., 2016, 14(12): 121903.

 

2017

174. Dasen Zhang, and Zhi-Ming Zhang*, The X-like shaped spatiotemporal structure of the biphoton entangled state in a cold two-level atomic ensemble, Sci.Rept., 2017, 07: 42373.

175. Jun-Hao Liu, Yu-Bao Zhang, Ya-Fei Yu, and Zhi-Ming Zhang*, Entangling cavity optomechanical systems via a flying atom, Optics Express, 2017, 25(07): 7592-7603.

176. Chao-Ping Wei, and Zhi-Ming Zhang*, Improving the phase sensitivity of a Mach-Zehnder interferometer via a nonlinear phase-shifter, J.Mod.Opt., 2017, 64(7): 743-749.. 

177. Chao-Ping Wei, Ya-Fei Yu, and Zhi-Ming Zhang*, Phase sensitivity of a multi-mode nonlinear interferometer with single photons, Int.J.Theor.Phys., 2017, 56(5)1577-1584.

178. Wen-Qing Xia, Ya-Fei Yu, and Zhi-Ming Zhang*, “Adjustable quantum coherence effects in a hybrid optomechanical system”, Chin. Phys.B, 2017, 26(05): 054210. 

179. Li Qing, Zhi-Ming Zhang*,“Steady-state squeezing of mechanical modes in a ring-cavity optomechanical system via cubic nonlinearity”, 量子电子学报2017346): 705-712. 

180. 林银,黄明达,於亚飞*,张智明,“从离散Wigner函数的角度探讨量子相干性度量”,物理学报20176611):110301

181.  Chao-Quan Wang, Jian Zou, Zhi-Ming Zhang, “Generating squeezed states of a nanomechanical resonator via a charge qubit in a hybrid system”, Mod. Phys. Lett. B, 2017,‏ 31(36): 1750343.

 

2018

182. Wan-Ying Wei, Ya-Fei Yuand Zhi-Ming Zhang*,“Multi-window transparency and fast–slow light switching in a quadratically coupled optomechanical system assisted with three-level atoms”,Chin. Phys. B 2018273): 034204.

183. Yu-Bao Zhang, Jun-Hao Liu, Ya-Fei Yu, and Zhi-Ming Zhang*,“Entangling two oscillating mirrors in an optomechanical system via a flying atom”,Chin. Phys. B2018277):074209.

184. 曹智伊,蔡秋华,於亚飞,张智明*,“双腔光力系统中机械振子的基态冷却”,量子光学学报,  2018242):170  .  

185. Zhu-Cheng Zhang, Yi-Ping Wang, Ya-Fei Yu*, and Zhi-Ming Zhang*,“Quantum squeezing in a modulated optomechanical system”,Optics Express, 201826(9)11915.

186. Li-Li Guo, Ya-Fei Yu*, and Zhi-Ming Zhang*,“Improving the phase sensitivity of an SU(1,1) interferometer with photon-added squeezed vacuum light”,Optics Express, 201826(22)29099

187. Jie Yao , Ya-Fei Yu*, and Zhi-Ming Zhang*,“Effects of Casimir force on high-order sideband generation in an optomechanical system”,Chin.Opt.Lett.2018, 16 (11): 111201.

188. Yi-Ping Wang , Zhu-Cheng Zhang, Ya-Fei Yu*, and Zhi-Ming Zhang*,“Properties of the output field of a hybrid superconducting quantum circuit system”, J. Phys.B: At.Mol.Opt.Phys., 2018, 51: 175504.

189. Ping Zou and Zhi-Ming Zhang, “Prethermalization in an trapped ion spin chain with short interaction range”, J. Phys.B: At.Mol.Opt.Phys., 2018, 51: 145003.

 

2019

190. Jun-Hao Liu, Yu-Bao Zhang, Ya-Fei Yu, and Zhi-Ming Zhang*Photon-phonon squeezing and entanglement in a cavity optomechanical system with a flying atom”,Frontier of Physics, 201914(1):  12601.

191. Yi-Ping Wang, Zhu-Cheng Zhang, Ya-Fei Yuand Zhi-Ming Zhang*,“Quadrature squeezing of the mechanical mode in a superconducting electromechanical system”,Laser Phys. Lett. 2019, 16: 015205. 

192. Yi-Ping Wang, Zhu-Cheng Zhang, Ya-Fei Yu*, and Zhi-Ming Zhang*Effects of the Casimir force on the properties of a hybrid optomechanical system”,Chin. Phys. B 2019281): 014202.

193. Zhu-Cheng Zhang, Yi-Ping Wang, Ya-Fei Yu*, and Zhi-Ming Zhang* Normal-Mode Splitting in a Weakly Coupled Electromechanical System with a Mechanical Modulation”,Ann. Phys. (Berlin)2019, 531: 1800461.  .

194. Ming-Da Huang, Ya-Fei Yu*, and Zhi-Ming Zhang*,“The negativity-to-violation map between Wigner function and quantum contextuality inequality for a single qudit”,Ann. Phys. (Berlin)20195311800464.

195. Jun-Hao Liu, Ya-Fei Yu*, and Zhi-Ming Zhang*Nonreciprocal transmission and fast-slow light effects in a cavity optomechanical system”, Optics Express, 201927(11) 15382.

196. Chun-Li Liu, Li-Li Guo, Zhi-Ming Zhang*and Ya-Fei Yu*, Negativity of Wigner function and phase sensitivity of an SU(1,1) interferometer”,Chin. Phys. B2019286):060704.

197. Yi-Ping Wang, Zhu-Cheng Zhang, Ya-Fei Yu*, and Zhi-Ming Zhang*Transmission properties and PT-symmetry in a hybrid quantum electromechanical system”,Results in Physics, 201915102560

198.  Kai Wang, Qin Wu, Ya-Fei Yu*, and Zhi-Ming Zhang*, “Nonreciprocal photon blockade in a two-mode cavity with a second-order nonlinearity”, Phys.Rev.A 2019,100, 053832. 

199. Wei Ye, Liyun Hu* , Kuizheng Zhang, Jiehui Huang*and Zhiming Zhang,“Properties of two-mode squeezed Laguerre polynomial-excited vacuum state generated by conditional measurement”,Phys. Scr. 201994 085401

200. Zhantong Qi , Cong Du , Xiaojuan Qin , Jindong Wang* , Zhengjun Wei , and Zhiming Zhang,“Improvement of the safe transmission distance via optimization of the photon number distribution for the faint optical pulse in practical quantum key distribution systems”,Eur. Phys. J. D 2019, 73: 161

201.  Chen Yan-HuiWang Jin-Dong*Du CongMa Rui-LiZhao Jia-YuQin Xiao-JuanWei Zheng-JunZhang Zhi-Ming“Eavesdropping and countermeasures for backflash side channel in fiber polarization-coded quantum key distribution”,Acta Physica Sinica, 20196813):130301

 

2020

202. Yu-Ming Xiao, Jun-Hao Liu, Qin Wu, Ya-Fei Yu*, and Zhi-Ming Zhang*,Optical nonreciprocity in a piezo-optomechanical system”,Chin. Phys. B, 2020, 29, 074204.

203. Li-Mei Xie, Zhu-Cheng Zhang, Qin Wu, Zhi-Ming Zhang*, and Ya-Fei Yu*, The weak Coulomb force estimation via an optomechanical system”, J. Phys. B- At. Mol. Opt. 2020, 53(10), 105401.

204. Ming-Da Huang, Ya-Fei Yu*, and Zhi-Ming Zhang*, Re-examining a local-realism test by modifying the classical boundary for modular phase-space measurements”, Phys.Rev.A 2020, 102, 022229.

205.  Jun-Hao Liu, Guangqiang He, Qin Wu, Ya-Fei Yu, Jin-Dong Wang*, and Zhi-Ming Zhang*,  Fraction-order sideband generation in an optomechanical system”,Opt.Lett., 2020, 45(18): 5169

206.  Du CongWang Jin-Dong*Qin Xiao-JuanWei Zheng-JunYu Ya-FeiZhang Zhi-Ming,“A simple protocol for measuring device independent quantum key distribution based on hybrid encoding”,Acta Physica Sinica, 20206919):190301

207.  Yi-Ping Yuan, Cong Du, Qi-Qi Shen, Jin-Dong Wang*Ya-Fei Yu, Zeng-Jin Wei, Zhao-Xi Chen, and Zhi-Ming Zhang,“Proof-of-principle demonstration of measurement- device- independent quantum key distribution based on intrinsically stable polarization-modulated units”, Optics Express, 202028(8)10772

 

2021

208.  Jun-Hao Liu, Ya-Fei Yu, Qin Wu, Jin-Dong Wang*, and Zhi-Ming Zhang*,Tunable high-order sideband generation in a coupled double-cavity optomechanical system”, Optics Express, 202129(8): 12266.

209.  Jun-Hao Liu, Ya-Fei Yu, Jin-Dong Wang,* and Zhi-Ming Zhang*“High-Efficiency Generation of Flat High-Order Sidebands in a Gently Modulating Optomechanical System”Ann. Phys. (Berlin)2021, 5332100359.

210.  Meng-yao Guo, Jun-hao Liu ,Ya-yei Yu*, Zhi-ming Zhang*, “Enhancing signal and signal-to-noise ratio with  post-selection and nonclassical states”, Results in Physics, 2021, 31: 104868

211.尹霜,於亚飞,张智明*一种基于弱测量的参量评估方案量子光学学报2021, 27(3)200-206

212.张晓东,於亚飞*张智明*,“量子弱测量中纠缠对参数估计精度的影响”,   ,2021, 70(24):240302。

213.沈琦琦,张毅,王金东*,於亚飞,魏正军,张智明,“量子密钥分发系统中抗扰动偏振编码模式的实验研究”,物理学报2021, 7018):180302.

 

2022

214.刘洧宁,刘军浩,於亚飞*,张智明*,“在光学系统中利用弱值放大模拟搜索算法”,光学学报,2022,42(03): 0327020

215.张智明,关于随机误差处理的一点讨论”,大学物理20224111):39

216.  Yi Zhang, Xiaojuan Qin, Jindong Wang ,Yafei Yu, Zhengjun Wei, and Zhiming Zhang,“A phase modulation polarization encoding module applied to one-to-many QKD network based on wavelength division multiplexing”,Chin.Opt.Lett., 20222212):122701

217.  Shang Mi, Shuang Dong, Qincheng Hou, Jindong Wang*, Yafei Yu, Zhengjun Wei and Zhiming Zhang, “Joint photon-number splitting attack on semi-quantum key distribution”, Frontiers in Physics, 2022,10:1029552 DOI 10.3389/fphy.2022.1029552.

218.  曹若琳,彭清轩,王金东*,陈勇杰,黄云飞,於亚飞,魏正军,张智明,“基于单光子计数反馈的低噪声光纤信道波分复用实时偏振补偿系统”,物理学报,2022,7113):130306.

 

2023

219. 刘军浩,於亚飞,王金东*张智明*,“腔光力学研究进展”,量子光学学报2023, 29(1)41-50

220.  Shuang Dong, Shang Mi, Qingcheng Hou, Yutao Huang, Jindong Wang*, Yafei Yu, Zhengjun Wei, Zhiming Zhang and Junbin Fang,Decoy state semi-quantum key distribution, EPJ Quantum Technology,  202310:18.  https://doi.org/10.1140/epjqt/s40507-023-00175-0.

221.  Yue Wu, Jun-Hao Liu*, Ya-Fei Yu, Zhi-Ming Zhang, and Jin-Dong Wang*,“Entangling a Magnon and an Atomic Ensemble Mediated by an Optical Cavity”,Phys.Rev.Applied202320034043

 

2024年

222. 张智明,对《大学物理》论文“关于拉比强信号理论的疑问和思考解答”再讨论,大学物理2024434):29

223. 张智明,何珊,孙铁囤,“关于太阳能电池若干问题的讨论大学物理2024435):25.

224. 张智明,何珊,刘军浩,“太阳能电池电路的负载特性研究”,大学物理实验2024373):1

225. 张智明,何珊,刘军浩,“光电效应实验中影响电流的因素之分析”,

226. 张智明,“关于对数运算中物理量的量纲问题”

 

附件3:科研获奖与荣誉称号:

1. 1991年获西安交通大学科技成果一等奖:“原子与腔电磁场模相互作用中场和原子非经典性质的研究”(独立完成);

2. 1992年被授予"陕西省第二届优秀青年科技工作者"称号;

3. 1995年获西安交通大学科技成果一等奖:“量子光场与原子多光子相互作用中场的压缩和原子的动力学性质” (第一完成者)

4. 1996年获陕西省教委科技进步二等奖:“量子光场与原子多光子相互作用中场的压缩和原子的动力学性质” (第一完成者)

5. 1997年获陕西省科技进步二等奖 :“量子光场与原子多光子相互作用中场的压缩和原子的动力学性质” (第一完成者)

6. 1998年获中国科学院自然科学三等奖:“非经典光场和原子的双光子相互作用” (第四完成者);

7. 1999年被授予上海交通大学“东浩杰出青年教师”称号;

8. 2009年被评为华南师范大学科研工作优秀奖;

9. 2012年被评为华南师范大学科研工作优秀奖;

10. 2023年获国家级一流本科课程《光学发展与人类文明》,证书编号:2023231546,排名3/5,教育部2023.05

11. 2023年获华南师范大学第十二届教学成果一等奖,获奖成果:“博雅、专业、思政”有机融合的国家一流课程《光学发展与人类文明》的建设与实践,编号:JXCG2023009,排名4/5,华南师范大学2023.07

 

地址:广东理工学院综合楼4楼  电话:(0758)8387822(院办)、8387888(招办) 传真:8387899 邮编:526100