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徐慧华
[ 作者:佚名 来源:哈工大(威海)理学院 浏览:2404 录入时间:2013年10月18日 ]

姓名: 徐慧华

职位:       哈尔滨工业大学(威海),讲师

通讯地址: 哈尔滨工业大学(威海),理学院,光电科学系

                   山东省威海市文化西路2号,威海,264209

电子信箱: 8363295ily@163.com

 

学习和工作简历

2003.09-2007.07      山东大学信息科学与工程学院电子科学与技术专业,本科;

2007.09-2012.12      山东大学信息科学与工程学院光学工程专业,硕博连读;

2013.01至今            哈尔滨工业大学(威海)理学院光电系,讲师

 

研究方向

激光物理与光电子学,研究内容包括主动及被动调Q激光器、超短光脉冲的产生及测量和应用、激光二极管泵浦的固体激光器、固体拉曼激光器、腔内非线性效应激光器、新型激光材料等。

 

教学

大学物理实验;主讲:“大学物理A”;“信号与系统”

 

主要研究论文

(1) H. H. Xu, X. Y. Zhang, Q. P. Wang, C. Wang, W. T. Wang, L. Li, Z. J. Liu, Z. H. Cong, X. H. Chen, S. Z. Fan, H. J. Zhang, and X. T. Tao, “Diode-pumped passively Q-switched Nd:YAG/SrWO4 intracavity Raman laser with high pulse energy and average output power,” Appl. Phys. B, 2012, vol. 107, pp. 343-348. (SCI)

(2) H. H. Xu, X. Y. Zhang, Q. P. Wang, C. Wang, W. T. Wang, L. Li, Z. J. Liu, Z. H. Cong, X. H. Chen, S. Z. Fan, and H. J. Zhang, “Diode-pumped passively Q-switched yellow laser with SrWO4 Raman crystal and ceramic Nd:YAG gain medium,” Opt. Commun., 2012, vol. 285, pp. 5302-5305. (SCI)

(3) H. H. Xu, X. Y. Zhang, Q. P. Wang, W. T. Wang, C. Wang, L. Li, Z. H. Cong, Z. J. Liu, X. H. Chen, S. Z. Fan, G. F. Jin, and H. J. Zhang, “Diode-pumped passively Q-switched Nd:YAG/BaWO4/KTP yellow Laser,” The Conference on Lasers and Electro-Optics (CLEO) , 2012, pp. JW 2A.24. (SCI)

(4) H. H. Xu, X. Y. Zhang, Q. P. Wang, Z. H. Cong, C. Wang, W. T. Wang, L. Li, Z. J. Liu, X. H. Chen, S. Z. Fan, J. L. He, and H. J. Zhang, “KLu(WO4)2 crystal as the Raman medium in a diode-pumped passively Q-switched Nd:YAG laser,” Optoelectron. Lett., 2012, vol. 8(5), pp. 321-324. (EI)

(5) H. H. Xu, X. Y. Zhang, Q. P. Wang, X. H. Chen, C. Wang, L. Li, Z. J. Liu, Z. H. Cong, S. Z. Fan, and H. J. Zhang, “Diode-pumped eye-safe intracavity Raman laser with ceramic Nd:YAG gain medium and BaWO4 Raman crystal,” Adv. Mater. Res., 2012, vol. 531, pp. 181-184. (EI)

(6) C. Zhang, X. Y. Zhang, Q. P. Wang, Z. H. Cong, and H. H. Xu, “Modeling of Actively Q-Switched Quasi-Three-Level Lasers,” IEEE J. Quantum Electron., 2011, vol. 47, pp. 455-461.

(7) X. L. Zhang, X. Y. Zhang, Q. P. Wang, C. Wang, H. H. Xu, Y. Tang, L. Li, Z. j. Liu, X. H. Chen, and S. Z. Fan, “LD side-pumped Nd:GGG CW laser operating at 1110 nm and 1105 nm dual wavelengths and 1110 nm single wavelength,” Laser Phys., 2011, vol.21, pp. 1047-1050.

(8) Z. H. Cong, X. Y. Zhang, Q. P. Wang, Z. J. Liu, X. H. Chen, S. Z. Fan, C. Zhang, H. H. Xu, H. J. Zhang, and X. T. Tao, “Diode-pumped actively Q-switched intracavity BaWO4 Raman laser with a ceramic Nd:YAG as the gain medium,” CLEO/Pacific Rim 2009 Shanghai, 2009, pp. WD1,.

(9) J. L. He, X. Y. Zhang, Q. P. Wang, X. H. Chen, Z. H. Cong, Z. J. Liu, S. Z. Fan, H. H. Xu, and C. Wang, “Theoretical analysis on a silicon waveguide Mid-IR Raman laser,” The International Symposium on Photonics and Optoelectronics (SOPO), 2012.

(10) C. Wang, X. Y. Zhang, Q. P. Wang, X. H. Chen, Z. H. Cong, Z. J. Liu, H. H. Xu, and J. L. He, “A Brief Study on Silicon Crystal Materials as a Mid-IR Raman Amplifier,” Adv. Mater. Res., 2012, vol. 531, pp. 185-188.

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