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个人简介

工作经历: 1997.10-至今,浙江大学,光电科学与工程学院,教授、博士生导师 1997.05-1997.09,浙江大学,光电科学与工程学院,副教授 1995.07-1997.04,东京大学,神奈川科学技术院,研究员 1993.09-1995.06,中国科技大学,精密机械与精密仪器,博士后 教育经历: 1990.02-1993.06,浙江大学,光学工程,博士生 1987.09-1990.02,浙江大学,光学工程,硕士生 1982.09-1987.06,中国科技大学,精密机械与精密仪器,本科生

研究领域

从事光学工程、光电信息检测技术/原子力显微镜技术、3D成像技术等方向的应用基础和应用技术研究。

近期论文

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[46] Y. D. Wang, Q. Y. You, J. J. Chen, and H. J. Zhang*, Research on characteristics of symmetric optothermal microactuators, Appl. Opt. 2018, 57(10): 2420-2425. SCI,TOP期刊 [45] Q. Y. You, H. J. Zhang*, Y. D. Wang and J. J. Chen, Dynamic properties of symmetric optothermal microactuator, J. Micromech. Microeng. 2017, 27, 105011. SCI,TOP期刊 [44] Shuying Wang, Qin Chun, Qingyang You, Yingda Wang, Haijun Zhang*. Dynamic modelling and experimental study of asymmetric optothermal microactuator, Optics Communications, 2017, 383: 566-570. SCI,TOP期刊 [43] Wang Shuying, Zhang Dongxian, Zhang Haijun*, Han Xu and Xu Rui. Super-resolution optical microscopy based on scannable cantilever-combined microsphere, Microscopy Research & Technique, 2015, 78(12): 1128-1132. SCI,TOP期刊 [42] Han Xu, Zhang Haijun*, Xu Rui, Wang Shuying and Qin Chun. Theoretical model of an optothermal microactuator directly driven by laser beams, J. Micromech. Microeng. 2015, 25(7): 075012. SCI,TOP期刊 [41] B. Shi, H. J. Zhang, B. Wang, F. T. Yi, J. Z. Jiang, D. X*. Zhang. Dynamic properties of a metal photo-thermal micro-actuator, Applied Optics, 2015, 54(6): 1369-1373. SCI,TOP期刊 [40] F. H. Li, C. X. Pei, B. Shi, L. B. Sun, H. J. Zhang, J. Z. Jiang, D. X. Zhang*. Design of ultrafast laser-driven microactuator based on photoacoustic mechanism, Optics Express, 2015, 23(16): 20563. SCI,TOP期刊 [39] 陈礼诚,张冬仙*,章海军,王旭龙琦. 基于微纳结构与金属纳米层的颜色调控技术研究,物理学报,2015,64(3):038102. SCI [38] 李方浩,章海军*,张冬仙. 环形定子的激光光致表面波机理及可视化探测研究. 物理学报,2013, 62(22): 224209. SCI [37] Shi Bin, Zhang Haijun*, Zhang Dongxian. AFM Tip Cleaning by Using Gratings as Micro-washboards. Microscopy Research & Technique, 2013, 76(11): 1131-1134. SCI,TOP期刊 [36] Liu Mingyue, Zhang Haijun*, Zhang Dongxian. A compact CCD-monitored AFM with optical vision and improved performances. Microscopy Research & Technique, 2013, 76(9):931-935. SCI,TOP期刊 [35] 王淑莹,章海军,张冬仙*. 基于微球透镜的任选区高分辨光学显微成像新方法研究,物理学报,2013,62(3): 034207. SCI [34] 史斌,章海军,吴兰,张冬仙*. 用于Raman光谱与微纳米结构同步检测的Raman-AFM系统研究,光谱学与光谱分析,2012,32(4): 993- 996. SCI [33] Wang Xulongqi, Zhang Haijun, Zhang Dongxian*. Color tuning by local sputtering metal nanolayer on microstructured porous alumina, Microscopy Research and Technique, 2012, 75(5): 698-701. SCI,TOP期刊 [32] 支绍韬,章海军*,张冬仙. 基于大数值孔径环形光锥照明的超分辨光学显微成像方法研究,物理学报,2012,61(2): 024207. SCI [31] Fu Xia, Zhang Dongxian, Zhang Haijun*, Zie Zhigang. A large-sample atomic force microscope observing in both air and liquid, Microscopy Research and Technique, 2011, 74, 1058-1061. SCI,TOP期刊 [30] Wang Xulongqi, Zhang Dongxian*, Zhang Haijun*, et al. Tuning color by pore-depth of metal-coated porous alumina, Nanotechnology, 2011, 22(30): 305306. SCI,TOP 期刊 [29] 王旭龙琦,张冬仙*,章海军. 基于多孔氧化铝和ALD技术的颜色调控方法研究,物理学报,2011,60(5): 058104-1. SCI [28] Hao Xiang, Kuang Cuifang*, Liu Xu, Zhang Haijun. Microsphere based microscope with optical super-resolution capability, Applied Physics Letters, 2011, 99(20): 3662010. SCI,TOP期刊 [27] Wang Leyan, Zhang Dongxian, Zhang Haijun. Fabrication of micropillars by laser-induced thermoplastic method, Applied Physics Letters, 2010, 97: 131905. SCI,TOP期刊 [26] Ma LH, Wang H, Li Y, Zhang HJ*. Elimination of zero-order diffraction and conjugate image in off-axis digital holography, Journal of Modern Optics, 2009, 56(21): 2377-2383. SCI [25] 刘超,张冬仙*,章海军. 光热膨胀材料的光谱特性分析及微型光热驱动机构研究,光谱学与光谱分析,2009,29(11): 3047-3051. SCI [24] Fu X, Zhang DX*, Zhang HJ. A novel AFM operating in liquid with open probe and optimized laser tracking system, Chinese Optics Letters, 2009, 7(10): 891-893. SCI [23] Wang LY, Zhang DX*, Wen ZH, Zhang HJ. Micro-fabrication and monitoring of three-dimensional microstructures based on laser- induced thermoplastic formation, Microscopy Research & Technique, 2009, 72: 717-722. SCI,TOP期刊 [22] Ma LH, Zhang DX, Liu C, Zhang HJ et al. Theoretical modelling and experimental study of novel photothermal microactuators, Chinese Optics Letters, 2009, 7(8): 694-698. SCI [21] 刘超,张冬仙,章海军. 微型光热驱动机构的光热膨胀理论模型与实验研究,物理学报,2009,58(4): 2619-2624. SCI(21) [20] Liu Chao, Zhang Dongxian, Zhang Haijun*, et al. Dynamic characteristics of micro-optothermal expansion and optothermal microactuators, Micro & Nano Letters, 2009, 4(1): 9-15. SCI [19] 王乐妍,张冬仙,章海军*. 基于激光光致发光光谱的果实成熟度测试方法研究,光谱学与光谱分析,2008,28(12): 2772-2776. SCI [18] 刘超,张冬仙, 章海军. 基于液相AFM及干涉频谱法的多孔氧化铝膜在线测量系统研究,光谱学光谱分析,2008,28(7): 1679-1683. SCI [17] Zhang Dongxian, Zhang Haijun, Liu chao. Theoretical and experimental study of optothermal expansion and optothermal microactuator, Optics Express, 2008, 16(17): 13476-13485. SCI,TOP期刊 [16] 张冬仙,刘超,章海军. 微纳米尺度红外光热膨胀效应及新型光热驱动方法研究,物理学报,2008,57(5): 3107-3112. SCI [15] Dongxian Zhang, Haijun Zhang, Chao Liu. Microscopic observation and study of laser-controlled micro optothermal drive mechanism, Microscope Research & Technique, 2008, 71(2): 119-124. SCI,TOP期刊 [14] Li XH, Yamauchi T, Iwai H, Yamashita Y, Zhang HJ*, Hiruma T. Full-field quantitative phase imaging by white-light interferometry with active phase stabilization and its application to biological samples, Optics Letters, 2006, 31(12): 1830-1832. SCI,TOP期刊 [13] Yulin He, Dongxian Zhang, Haijun Zhang*. A novel atomic force microscope with high stability and scan speed, Instrumentation Science and Technology, 2006, 34(5): 547-554. SCI [12] Dongxian Zhang, Haijun Zhang, Yulin He. In-situ thickness measurement of porous alumina by atomic force microscopy and the reflectance wavelength measurement from 400-1000 nm, Microscope Research & Technique, 2006, 69 (4): 267-270. SCI,TOP期刊 [11] 张冬仙,章海军,林晓峰,何玉琳. 多孔氧化铝薄膜的纳米结构和光谱特性研究,光谱学与光谱分析,2006,26(3): 411-414. SCI [10] Yulin He, Haijun Zhang*, Dongxian Zhang. Theoretical and experimental study of photo-thermal expansion using AFM, Journal of Micromech. and Microeng., 2005, 15 (9): 1637-1640. SCI,TOP期刊 [9] Zhang DX, Zhang HJ, Lin XF. Atomic force microscope in liquid with a specially designed probe for practical application, Review of Scientific Instruments, 2005, 76 (5): 053705-1. SCI [8] Zhang HJ*, Zhang DX, He YL. A novel AFM operating in liquid for in situ investigation of electrochemical preparation of porous alumina, Microscope Research & Technique, 2005, 66 (2-3): 126-131. SCI,TOP期刊 [7] Zhang Dongxian, Zhang Haijun. Wide range length measurement by dual imaging-unit AFM based on porous alumina. Microscope Research & Technique, 2004, 64(3): 223-227. SCI,TOP期刊 [6] 张冬仙,章海军. PSD233型位置敏感元件的特性及其在AFM中的应用, 红外与毫米波学报, 2003, 22(5): 384-388. SCI [5] Zhang Haijun*, Zhang Dongxian. Dual imaging unit AFM for nanometer order length metrology based on reference scales. J. Vac. Sci. Technol. B, 2002, 20(5): 1935-1938. SCI [4] Zhang Haijun*, Wu Lan, Huang Feng. Dual tunneling-unit scanning tunneling microscope for practical length measurement based on reference scales. J. Vac. Sci. Technol. B, 2000, 18(6): 2684-2687. SCI [3] Zhang Haijun*, Wu Lan, Huang Feng. Electrochemical micro-process by scanning ion-conductance microscopy. J. Vac. Sci. Technol. B, 1999, 17(2): 269-272. SCI [2] Zhang Haijun*, Huang Feng, Higuchi Toshiro. Dual unit STM-AFM for length measurement based on crystalline lattice. J. Vac. Sci. Technol. B, 1997, 15(4): 780-784. SCI [1] Zhang Haijun*, Toshiro Higuchi, Nobuhisa Nishioki. Dual tunneling unit STM for length measurement based on crystalline lattice. J. Vac. Sci. Technol. B, 1997, 15(1): 174-177. SCI

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