马剑

发布时间: 2012-06-29      访问次数: 1048

马剑

厦门大学

信息科学与技术学院电子工程系

2009-2012级硕士研究生

毕业去向:中国科学院上海光学精密机械研究所

 

电子邮箱:

378014396@qq.com

研究方向:

激光二极管泵浦被动调Q固体激光器方向的研究

教育背景:

20049—20087月,浙江大学光电信息工程学系信息工程专业学士

20099—20127月,厦门大学信息科学与技术学院电子工程系光学工程专业硕士

研究生阶段获奖情况:

20099月,获得厦门大学硕士研究生三等奖学金

20109月,获得厦门大学硕士研究生一等奖学金

20119月,获得厦门大学硕士研究生一等奖学金

201111月,获得厦门大学光华奖学金

20125月,获得厦门大学本栋奖学金

代表性论文:

1. J. Ma, J. Dong*, K. Ueda, and A. A. Kaminskii, 2011. Optimization of Yb:YAG/Cr4+:YAG composite ceramics passively Q-switched microchip lasers, Applied Physics B-Lasers and Optics, 105(4): 749-760

2. J. Ma, Y. Cheng, J. Dong*, K. Ueda, A. A. Kaminskii, 2011. Enhancement of Cr,Yb:YAG self-Q-switched Lasers by Bonding Yb:YAG Crystal, International Quantum Electronics ConferenceIQECand Conference on Lasers and Electro-Optics (CLEO) Pacific Rim

3. J. Dong*, J. Ma, Y. Cheng, Y. Y. Ren, K. Ueda, and A. A. Kaminskii, 2011. Comparative study on enhancement of self-Q-switched Cr,Yb:YAG lasers by bonding Yb:YAG ceramic and crystal, Laser Physics Letters, 8(12): 845-852

4. J. Dong, J. Ma, 2010. Advances in passively Q-switched Yb3+-doped laser materials microchip solid-state lasers, Chinese Journal of lasers, 37(9): 2278-2288

5. J. Ma, J. Dong*, 2011. Crystalline-orientation dependent laser performance of Yb:YAG microchip lasers, OSA / ASSP 2011

6.J. Ma, Y. Cheng, J Dong*, Y. Y. Ren, 2012. Passively Q-switched Yb:YAG ceramic laser with Cr4+:YAG as saturable absorber. Chinese Optics Letters, 10( s1): s11407-1 - s11407-3

7. J. Dong*, Y. Cheng, J. Ma, K. Ueda, A. A. Kaminskii,2011. Efficient Continuous-wave and Q-switched Yb:LuAG Lasers, International Quantum Electronics ConferenceIQECand Conference on Lasers and Electro-Optics (CLEO) Pacific Rim 2011

8. J. Dong*, G. Xu, J. Ma, M. Cao, Y. Cheng, K. Ueda, H. Yagi, A. A. Kaminskii, 2012. Investigation of continuous-wave and Q-switched microchip laser characteristics of Yb:YAG ceramics and crystals, Optical Materials, 34(6): 959–964

9. J. Y. Zhou, J. Ma, J. Dong*, K. Ueda, and A. A. Kaminskii, 2011. Efficient, nanosecond self-Q-switched Cr,Yb:YAG lasers by bonding Yb:YAG crystal, Laser Physics Letters, 8(8): 591-597 

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