杨克建

杨克建,男,19811月出生,工学博士,澳门皇冠金沙网站教授、博士生导师,德国洪堡基金获得者,美国光学学会会员,中国光学学会高级会员,教育部科技评价与评审信息系统评审专家。主要研究方向为激光物理与技术、非线性光学、光电材料与器件等,先后主持承担、参与国家及省部级项目10余项;在Optics LetterOptics ExpressPhotonics ResearchIEEE Journal of Selected Topics in Quantum Electronics等国际学术期刊上发表论文200余篇,他引千余次,以第一或通讯作者发表SCI/EI论文50余篇,当前H 因子为23,当前RG Score43.47https://www.researchgate.net/profile/Kejian_Yang),先后获山东省优秀博士论文、山东省优秀科研成果奖一等奖、二等奖等荣誉称号若干,入选2015年度首批“澳门皇冠真人55817青年学者未来计划”。


联系方式:

山东省济南市山大南路27号澳门皇冠真人55817澳门皇冠金沙网站, 250100

Tel: 0531-88365355

Emailk.j.yang@sdu.edu.cn


主要学习、工作经历:

1998.09-2002.07,澳门皇冠真人55817光电系,学士

2002.09-2007.07,澳门皇冠金沙网站,工学博士

2007.11-2010.03澳门皇冠真人55817晶体所物理学博士后流动站,博士后

2008.08-2009.10,德国Konstanz大学物理系,德国洪堡学者

2011.04-2012.03,德国Konstanz大学物理系,德国洪堡学者



主持承担的科研项目:

2017.01-2018.12,脉冲功率激光技术国家重点实验室开放基金

2015.01-2018.12,国家自然科学基金

2015.07-2020.06,澳门皇冠真人55817青年学者未来计划

2014.11-2016.11,澳门皇冠真人55817晶体材料国家重点实验室开放课题

2012.01-2014.12,澳门皇冠真人55817自主创新交叉学科基金

2011.01-2013.12,国家自然科学青年基金

2011.07-2014.07,山东省优秀中青年科学奖奖励基金

2008.08-2010.08,中国博士后科学基金第一期特别资助

2009.01-2010.12,中国博士后科学基金一等资助

2009.01-2010.12,山东省博士后创新项目三等资助

2010.01-2012.12,澳门皇冠真人55817自主创新基金自然科学类专项



获得的科研奖励:

2005年度山东高等学校优秀科研成果奖自然科学类二等奖 (第三位)

2006年度山东高等学校优秀科研成果奖自然科学类二等奖 (第三位)

2007年度山东高等学校优秀科研成果奖自然科学类二等奖 (第四位)

2008年度山东省优秀博士学位论文

2008年度澳门皇冠真人55817优秀博士学位论文

2009年度山东省高等学校优秀科研成果一等奖(第一位)

2010年度山东高等学校优秀科研成果二等奖(第二位)

2011年度山东高等学校优秀科研成果二等奖(第四位)



以第一/通讯作者发表的代表性论文:

[1] Xinyang Liu, Kejian Yang*, Shengzhi Zhao, Ming Li, Wenchao Qiao, Tao Li , Shuaiyi Zhang, Lihe Zheng, Liangbi Su, Jun Xu, and Jintian Bian, High Repetition Rate All-Solid-State Pulsed 2 ? m Laser Based on Selenide Molybdenum Saturable Absorber, IEEE Journal of Selected Topics in Quantum Electronics, 2018, 24 (5), 1600306.

[2] C. Wang, S.Z. Zhao, T. Li, K.J. Yang*, C. Luan, X.D. Xu, J. Xu, Passively Q-switched Nd:LuAG laser using few-layered MoS2 as saturable absorber, Optics Communications, 406 (2018), 249–253.

[3] Yandang Wang, Kejian Yang*, Shengzhi Zhao, Tao Li, Wenchao Qiao, Xiancui Su, Baitao Zhang, Jingliang He, Lihe Zheng, Liangbi Su*, Jun Xu, and Zijing Gao, Diode-pumped high-peak-power femtosecond Yb3+:(Gd0.1Y0.9)2SiO5laser at 1058.5 nm, Appl. Phys. Expr., 2017, 10, 092701.

[4] X. Liu, K. Yang*, S. Zhao, T. Li , W. Qiao, H. Zhang, B. Zhang, J.He, J. Bian, L. Zheng, L. Su, and J. Xu, High-power passively Q -switched 2 μm all-solid-state laser based on a Bi2Te3 saturable absorber, Photonics Research, 2017, 5(5), 461.

[5] Kejian Yang#, Tianli Feng, Shengzhi Zhao, Cheng Liu, Tao Li, Weiwei Ma, Zhengting Zou, Qingguo Wang, Liangbi Su, Piotr Solarz, Rados?aw Lisiecki, Jaros?aw Komar, Jun Xu, Lihe Zheng*, Witold Ryba-Romanowski*, Spectral and laser performance of a Tm3+:ScYSiO5 crystal, Journal of Alloys and Compounds, 2017, 712, 412-417.

[6] X.Liu, K.Yang,* S. Zhao, T.Li, C.Luan, X.Guo, B.Zhao, L.Zheng, L.Su, J.Xu, and J.Bian, Growth and lasing performance of a Tm,Y:CaF2 crystal, Opt.Lett., 2017, 42(13), 2567.

[7] Chao Luan, Xiaoyan Zhang, Kejian Yang*, Jia Zhao, Shengzhi Zhao, Tao Li, Wenchao Qiao, Hongwei Chu, Junpeng Qiao, Jun Wang, Lihe Zheng, Xiaodong Xu, and Jun Xu, High-Peak Power Passively Q-Switched 2-μm Laser With MoS2 Saturable Absorber, IEEE Journal of Selected Topics in Quantum Electronics, 2017, 23 (1), 1600105.

[8] C. Luan, K. Yang,* J. Zhao, S.Zhao, T.Li, H.Zhang, J.He, L.Song, T.Dekorsy, M.Guina, and L.Zheng, Diode-pumped mode-locked Tm:LuAG laser at 2μm based on GaSb-SESAM, Opt.Lett., 2017, 42(4), 839.

[9] Kai Wang, Kejian Yang*, Xiaoyan Zhang, Shengzhi Zhao, Chao Luan, Cheng Liu, Jun Wang, Xiaodong Xu, and Jun Xu, Passively Q-Switched Laser at 1.3 ?m With Few-Layered MoS2 Saturable Absorber, IEEE Journal of Selected Topics in Quantum Electronics, 2017, 23 (1), 1600205.

[10] Chao Luan, Kejian Yang*, Jia Zhao, Shengzhi Zhao*, Lei Song, Tao Li, Hongwei Chu, Junpeng Qiao, Chao Wang, Zhen Li, Shouzhen Jiang, Baoyuan Man, and Lihe Zheng, WS2 as a saturable absorber for Q-switched 2 micron lasers, Opt.Lett., 2016, 41 (16), 3783.

[11] T.Feng, K.Yang*, G.Li, S.Zhao, D.Li, T.Li, W.Qiao, C.Liu, X.Chen, X.Xu, L.Zheng, J.Xu, and R.Lan, Passively mode-locked Nd:LuAG laser at 1338 nm, Opt.Mat.Express, 2016, 6(1), 1-7.

[12] C.Liu, S.Zhao, Y.Li, K.Yang*, M.Li, G.Li, D.Li, T.Li, W.Qiao, T.Feng, X.Chen, L.Zheng, L.Su, and J.Xu, Stable kilo-hertz electro-optically Q-switched Tm,Ho:YAP laser at room, Opt. & Laser Tech., 2016, 81, 189-193.

[13] T.Feng, K .Yang*, J. Zhao, S. Zhao, W. Qiao, T. Li, T. Dekorsy, J. He, L. Zheng, Q. Wang, X. Xu, L. Su and J. Xu, 1.21 W passively mode-locked Tm:LuAG laser, Opt.Express, 2015, 23(9), 11819.

[14] Cheng Liu, Shengzhi Zhao, Guiqiu Li, Kejian Yang*, Dechun Li, Tao Li, Wenchao Qiao, Tianli Feng, Xintian Chen, Xiaodong Xu, Lihe Zheng, and Jun Xu, Experimental and theoretical study of a passively Q-switched Nd:LuAG laser at 1.3 μm with a V3+:YAG saturable absorber, Journal of the Optical Society of America B, 2015, 32 (5), 100.

[15] C. Liu, K. Yang*, S. Zhao, Y. Li, G. Li, D. Li, T. Li, W. Qiao, T. Feng, and X. Chen, 88 ns multi-millijoule LiNbO3electro-optically Q-switched Tm:LuAG laser, Optics Communications, 2015, 355, 167–171.

[16] T. L. Feng, K. J. Yang*, S. Z. Zhao, W. C. Qiao, J. Zhao, D. C. Li, G. Q. Li, T. Li, L. H. Zheng, J. Xu, Q. G. Wang, X. D. Xu, L. B. Su, An acoustic-optically Q-switched Tm:SSO laser at 2 μm, Optics Communications, 2015, 336, 1, 20-23.

[17] T. Feng, K. Yang *, S. Zhao, J. Zhao, W. Qiao, T. Li, L. Zheng, and J. Xu, Broadly wavelength tunable acoustic-optically Q-switched Tm:LSO laser, Applied Optics, 2014, 53, 6119-6122.

[18] Hongwei Chu, Shengzhi Zhao, Yufei Li, Kejian Yang*, Guiqiu Li, Dechun Li, Jia Zhao, Wenchao Qiao, Tao Li, Chuansheng Feng, Yonggang Wang, and Yishan Wang, Diode-pumped passively Q-switched Nd:GGG laser with a double-walled carbon nanotube saturable absorber, Laser Phys.Lett., 2014, 11, pp 035001-1-4.

[19] X.T. Chen, S.Z. Zhao, J. Zhao, K.J. Yang *, G.Q. Li, D.C. Li, W.C. Qiao, T. Li, H.J. Zhang,T.L. Feng, X.D. Xu, L.H. Zheng, J. Xu, Y.G. Wang, and Y.S. Wang, Sub-100 ns passively Q-switched Nd:LuAG laser with multi-walled carbon nanotube, Optics & Laser Technology, 2014, 64, 7–10.

[20] T. L. Feng, S. Z. Zhao, K. J. Yang*, G. Q. Li, D. C. Li, J. Zhao, W. C. Qiao, L. H. Zheng, J. Xu, Q.G. Wang, X.D. Xu, L.B. Su, Study on characteristics of diode-pumped continuous-wave tunable and passively Q-switched Tm:SSO laser, Applied Physics B, 2014, 117(1), 177-182.

[21] Tianli Feng, Shengzhi Zhao, Kejian Yang*, Jia Zhao, Guiqiu Li, Dechun Li, Wenchao Qiao, Tao Li, Xintian Chen, Cheng Liu, Yonggang Wang, Passively Q-switched lasers at 1.06 lm with graphene oxide and carbon nanotubes D2O dispersion, Optical Materials, 2014, 36,1270–1273.

[22] T.L.Feng, S.Z. Zhao, K.J. Yang,* G.Q. Li, D.C. Li, J. Zhao, W.C. Qiao, J. Hou, Y. Yang,  J.L. He, L.H. Zheng, Q.G. Wang, X.D. Xu, L.B. Su, and J. Xu, Diode-pumped continuous wave tunable and graphene Q-switched Tm:LSO lasers, Optics Express, 2013, 21 (21), 4665.

[23] K.J. Yang*, D. C. Heinecke, C. K?lbl, T. Dekorsy, S.Z. Zhao, L. H. Zheng, J. Xu, and G. J. Zhao Mode-locked Tm,Ho:YAP laser around 2.1 μm. Optics Express, 2013, 21 (2), 1574.

[24] K. Yang*, D. Heinecke, J. Paajaste, C. K?lbl, T. Dekorsy, S. Suomalainen, and M. Guina Mode-locking of 2 μm Tm,Ho:YAG laser with GaInAs and GaSb-based SESAMs, Optics Express, 2013, 21 (4), 4311.

[25] T L Feng, S Z Zhao, K J Yang *, G Q Li, D C Li, J Zhao,W C Qiao, L H Zheng, J Xu, G J Zhao and Y G Wang, A diode-pumped passively Q-switched Tm,Ho:YAP laser with a single-walled carbon nanotube, Laser Phys. Lett., 2013, 10, 095001.

[26] K. J. Yang, H. Bromberger, D. Heinecke, C. K?lbl, H. Sch?fer, T. Dekorsy, S. Z. Zhao, L.H.  Zheng, J. Xu, and G. J. Zhao, “Efficient continuous wave and passively mode-locked Tm-doped crystalline silicate laser”, Optics Express, 2012, 20, 18630-18635.  

[27] Kejian Yang*, Thomas Dekorsy, Lihe Zheng, Jun Xu, Guangjun Zhao, Efficient tunable  continuous wave laser operation of Tm:LuYSiO5 at room temperature, Advanced  Solid-State Photonics (ASSP), Rancho Bernardo Inn, San Diego, California, United States, 2012.

[28] K.J. Yang*, S.Z. Zhao, G. Zhang, K. Cheng, G.Q. Li, D.C. Li, J.L. Xu, J.L. He, L.H. Zheng, F. Wu, Q.G. Wang, L.B. Su, J. Xu, Diode-pumped continuous wave operation and passively Q-switched performances of a Nd:Sc2SiO5 laser crystal at 1.08 microns, Laser Phys. Lett., 2012, 9(1), 10–14.

[29] Kejian Yang*, Shengzhi Zhao, Gang Zhang, Kang Cheng, Bin Zhao, Jinlong Xu, Jingliang He, Yonggang Wang, Diode-pumped passively mode-locked Nd:Lu0.15Y0.85VO4 laser with a single-walled carbon nanotube saturable absorber, Optics Communications, 2012, 285, 158–161.  

[30] H. Bromberger, K. J. Yang*, D. Heinecke, T. Dekorsy, L. H. Zheng, J. Xu, and G. J. Zhao, Comparative investigations on continuous wave operation of a-cut and b-cut Tm,Ho:YAlO3  lasers at room temperature, Optics Express, 2011, 19(7), 6505-6513.

[31] Kejian Yang*, Hubertus Bromberger, Hartmut Ruf, Hanjo Sch?fer, Joerg Neuhaus, Thomas Dekorsy, Christiana Villas-Boas Grimm, Manfred Helm, Klaus Biermann, and Harald Künzel, Passively mode-locked Tm,Ho:YAG laser at 2 ?m based on saturable absorption of intersubband transitions in quantum wells, Opt. Express, 2010, 18(7), 6537-6544.

[32] Yang, K.J., Bromberger, H., Dekorsy,T., Zheng, L.H., Xu, J., Zhao, G.J., Investigation on continuous wave laser performance of alpha-cut Tm,Ho:YAlO3 crystal at room temperature, photonics and optoelectronics (SOPO), 2011 Symposium on, Wuhan, China.

[33] K.J.Yang, H. Ruf, J. Neuhaus, T. Dekorsy, C. Villas-Boas Grimm, M. Helm, E. Heumann,  G. Huber, K. Biermann and H. Künzel, “Saturable absorption mode-locking based on  intersubband transitions in quantum wells at 2μm”, in Conference on Lasers and Electro-Optics/Europe–EQEC 2009 (Optical Society of America, 2009), paper CA10.1.

[34] Kejian Yang, Shengzhi Zhao, Jingliang He, Baitao Zhang, Chunhua Zuo, Guiqiu Li,  Dechun Li and Ming Li, “Diode-pumped passively Q-switched and mode-locked Nd:GdVO4  laser at 1.34μm with V:YAG saturable absorber”, Opt.Exp., 16(25), 20176 (2008).

[35] Kejian Yang, Shengzhi Zhao, Guiqiu Li and Jingliang He, "Control of the pulse duration in a diode-pumped passively Q-switched intracavity frequency-doubling laser", Laser Physics, 18(6):725-728 (2008).

[36] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Dechun Li, and Jingliang He, "Simple way to optimize the pulse duration of diode-pumped passively Q-switched laser", Opt.Eng., 47(5):054201 (2008).

[37] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Dechun Li, Jing Wang, Jing An, and Ming Li,  “Doubly passively self-Q-switched Cr4+:Nd3+:YAG laser with a GaAs output coupler in a short cavity”,  IEEE Journal of Quantum Electronics, 43(2):109-115 (2007)

[38] Kejian Yang, Shengzhi Zhao, Ming Li, Guiqiu Li, Dechun Li, Jing Wang, and Jing An,  “Self mode-locking in a diode-pumped self-Q-switched Cr4+:Nd3+:YAG/KTP green laser”, Journal of Applied Physics, 101: 013105 (2007).

[39] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Ming Li, Dechun Li, Jing Wang and Jing An,  “Diode-pumped passively Q-switched mode-locked c-cut Nd:GdVO4 laser with a GaAs coupler”, Optical Materials, 29(9): 1153-1158 (2007).

[40] Kejian Yang, Shengzhi Zhao, Guiqiu Li, and Jing Zou, “Diode-pumped, passively Q-switched Nd:GdVO4 green laser with periodically poled KTP and Cr4+:YAG saturable absorber,” Journal of the Optical Society of America B, 23(4):671-675 (2006).

[41] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Ming Li, Dechun Li, Jing Wang and Jing An,  “Diode-pumped passively Q-switched mode-locked c-cut Nd:GdVO4 /KTP green laser with  a GaAs wafer,” IEEE Journal of Quantum Electronics, 42 (7): 683-689 (2006).

[42] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Jing Zou, Peng Song, and Wei Wu,“Pulse  compression in AO Q-switched diode-pumped Nd:GdVO4 laser with Cr4+ :YAG saturable absorber,” Applied Physics B, 80:687-692 (2005).  

[43] Kejian Yang, Shengzhi Zhao, and Guiqiu Li, “Pulse symmetry and pulse duration compression in a diode-pumped doubly passively Q-switched Nd:YVO4 lasers with Cr4+ :YAG and GaAs saturable absorbers,” Applied Physics B, 81:633-636 (2005).

[44] Kejian Yang, Shengzhi Zhao, Guiqiu Li, and Hongming Zhao, “Compression of pulse duration in a laser-diode, end-pumped, double Q-switched laser,” Applied Optics, 44(2):271-277 (2005).

[45] Kejian Yang, Shengzhi Zhao, Guiqiu Li, and Hongming Zhao, “Theoretical and experimental study of a laser-diode-pumped actively Q-switched intracavity-frequency-doubling Nd:YVO4 /KTP laser with acousto-optic modulator,” Optical Materials, 27:1415-1420 (2005).

[46] Kejian Yang, Shengzhi Zhao, and Guiqiu Li, “Diode-pumped actively Q-switched Nd:GdVO4 green laser with periodically poled KTP,” Optical  and Quantum Electronics, 37:875-887 (2005).

[47] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Dechun Li, and Jing Zou, “Laser-diode pumped CW Nd:GdVO4 green laser with periodically poled KTP,” IEE Electronics Letters, 41(4):191-193 (2005).

[48] Kejian Yang, Shengzhi Zhao, Guiqiu Li, Jing Zou, Peng Song, Dechun Li, and Wei Wu, “Modeling of a diode-pumped acousto optically Q-switched intracavity doubling Nd:GdVO4 /KTP green laser,” Optical Engineering, 44(11):114203-1-6 (2005).

[49] Kejian Yang, Shengzhi Zhao, Guiqiu Li, and Hongming Zhao, “Theoretical and experimental study of a laser-diode-pumped actively Q-switched Nd:YVO4 laser with acoustic–optic modulator,” Optics & Laser Technology, 37:381-386 (2005).

[50] Yang Kejian, Zhao Shengzhi, Zhao Hongming, and Li Guiqiu,“Theoretical and experimental study of a laser-diode-pumped passively Q-switched Nd:YVO4 laser with GaAs saturable absorber”Acta Photonica Sinica, 34(2):169-172 (2005) (In Chinese).

[51] Kejian Yang, Shengzhi Zhao, Guiqiu Li, and Hongming Zhao, “A new model of laser-diode end-pumped actively Q-switched intracavity frequency doubling laser,” IEEE Journal of Quantum Electronics, 40(9):1252-1257 (2004).  

[52] Kejian Yang, Shengzhi Zhao, Guiqiu Li, and Hongming Zhao, “Passive Q-switching of a laser-diode end-pumped Nd:GdVO4 laser with a GaAs output coupler in a short cavity,” Japanese Journal of Applied Physics, 43(12):8053-8058 (2004).

[53] Yang Kejian, Zhao Shengzhi, Zhao Hongming, and Li Guiqiu, “Characteristics of a laser-diode-pumped passively Q-switched Nd:YVO4 laser with Cr4+:YAG saturable  absorber,” Infrared and Laser Engineering, 33(6):567-571 (2004) (In Chinese).


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