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Dr. Lianju Shang

College of Physics and Engineering

Qufu Teachers' University

No.57 Jingxuan West Road

Qufu 273165, China

Phone: 0086 537-5050676

E-mail: lianjushang@163.com

Office: 201

Research field:

Optoelectronics, Fiber Optics, Laser Technology and Physical Education

Experience:

Associate professor

2007– 2015, Qufu Teachers' University, China

Engaged in studies of all-fiber lasers, including continuous wave fiber laser, Q-switched fiber lasers and self-mode-locked fiber lasers.

Taught laser principle, laser technology, engineering optics, applied optics and optoelectronics-experiments ect.

Assistant/Lecturer

2000–2007, Qufu Teachers' University, China

Engaged in solid state lasers, especially diode-pumped solid state lasers.

Taught mechanics, calorifics, optics, and electromagnetics ect.

Education:

2004–2007, Tianjin University, China

Doctor of Engineering, Electronic Science and Technology.

Doctoral dissertation: Acousto-optic Q-switched Yb3+-doped All-fiber Laser Pumped by Diode-lasers.

1997–2000, Qufu Teachers' University, China

Master of Science, Physical Electronics.

Master's thesis: Nd:YVO4 laser end-pumped by a diode-laser.

1993–1997, Qufu Teachers' University, China

Bachelor of Science, Physics.

Bachelor paper: On relativity of mass.

Hobbies:

Running, table tennis, roller skating.

Publications:

[1]L. Shang, J. Ning, X. Yang, “An acousto-optic Q-switched Yb3+-doped all-fiber laser pumped by diode-lasers,” Optoelectronics and Advanced Materials - Rapid Communications, 4(9), 1275-1277 (2010).

[2]L. J. Shang, J. P. Ning, G. F. Fan, Z. Q. Chen, Q. Han, H. Y. Zhang, “Experimental study of ytterbium-doped double-clad all-fiber laser at 1083 nm,” Journal of Optoelectronics and Advanced Materials, 9(8), 2354-2355 (2007).

[3]Lianju Shang, Jiping Ning, Zhenzhong Cao, Guofang Fan, Zhiqiang Chen, Qun Han, Huayong Zhang, “Factors that influence peak power of Q-switched fiber laser,” Modern Physics Letters B, 21(14), 843-850 (2007).

[4]L. J. Shang, J. P. Ning, G. F. Fan, Z. Q. Chen, Q. Han, H. Y. Zhang, “An useful analysis of selected parameters for the double-clad all-fiber laser with continuous wave,” Journal of Optoelectronics and Advanced Materials, 8(1), 359-362 (2006).

[5]L. J. Shang, J. P. Ning, G. F. Fan, Z. Q. Chen, Q. Han, H. Y. Zhang, “Effective methods to narrow pulse width of Q-switched fiber laser,” Journal of Optoelectronics and Advanced Materials, 8(2), 851-854 (2006).

[6]L. J. Shang, J. P. Ning, G. F. Fan, Z. Q. Chen, Q. Han, H. Y. Zhang, “Effective methods to improve pulse energy of Q-switched fiber laser,” Journal of Optoelectronics and Advanced Materials, 8(3), 1254-1257 (2006)

[7]Shang Lian-Ju, Ning Ji-Ping, “1.34µm Nd:YVO4 high efficiency laser end-pumped by diode-laser of flat-concave cavity type,” Chinese Physics, 14(7), 1387-1391 (2005).

[8]Shang Lian-Ju, “Cavity mode matching analyses of end-pumped solid-state lasers,” Acta Physica Sinica (Chinese journal), 52(6), 1408-1411 (2003).

[9]Shang Lian-Ju, “1.34µm Nd:YVO4 laser end-pumped by a diode-laser with flat-concave cavity type,” Acta Physica Sinica (Chinese journal), 52(10), 2476-2480 (2003).

[10]Shang Lian-Ju, Zheng Yi “1.34µm Nd:YVO4 laser end-pumped by a diode-laser with three-mirror folded cavity type,” Acta Physica Sinica (Chinese journal), 51(9), 2015-2017 (2002).

[11]Lianju Shang, Xiuqin Yang, Rende Ma, “Review of actively Q-switched all-fiber lasers,” Laser Technology (Chinese journal), 36(2), 170-173 (2012).

[12]Lianju Shang, Rende Ma, Aiguo Li, “Fibered Q-switches,” Laser Technology (Chinese journal), 34(6), 721-724 (2010).

[13]Lianju Shang, “Opto-isolator,” Modern Physics (Chinese journal), 15(3), 53-54 (2003).

[14]Lianju Shang, “Focus on Reducing Teachers' Burden,” Chinese Teachers and Staff (Chinese journal), (12), 32-33 (2002).

[15]Lianju Shang, “Thinking of Use and Management about Modern Instructional Media,” Experimental Teaching and Instrument (Chinese journal), (7-8), 52-53 (2001).

[16]Shang Lian-Ju, “Input-output characteristics analyses of end-pumped solid-state lasers,” Journal of Qufu Teachers’ University (Chinese journal), 30(2), 57-59 (2004).

[17]Shang Lian-Ju, “The theoretical formula of temperature and thermal stress inside Nd:YVO4 crystal end-pumped by a diode-laser,” Journal of Shangqiu Normal University (Chinese journal), 19(5), 12-16 (2003).

[19]Shang Lian-Ju, Zheng Yi, “Analysis and comparison of the stability of three kinds of folded cavity of CW Ti:sapphire laser,” Journal of Qufu Teachers’ University (Chinese journal), 26(1), 53-56 (2000).

[20]Jiping Ning, Lianju Shang, Guofang Fan, Zhiqiang Chen, Qun Han, Huayong Zhang, “An analysis of designing a CW double-clad fiber laser,” Proceedings of SPIE (Advanced Laser Technologies 2005), 6344I, 63440O/1-63440O/6 (2006).

[21]G. F. Fan, J. P. Ning, L. J. Shang, Q. Han, Z. Q. Chen, “A novel opinion about the coupling loss between single-mode fibers and waveguides,” Journal of Optoelectronics and Advanced Materials, 8(5), 1912-1914 (2006).

[22]Fan Guo-Fang, Ning Ji-Ping, Shang Lian-Ju, Han Qun, Chen Zhi-Qiang, “A new method to analyse two-side tapered waveguides,” Chinese Physics Letters, 22(9), 2394-2395 (2005).

[23]Guofang Fan, Jiping Ning, Lianju Shang, Qun Han, Zhiquan Chen, “Overlap integral in integrated acousto-optic devices,” Optical Engineering, 45(6), 064601 1-4 (2006).

[24]Fan G. F., Ning J. P., Shang L. J., Han Q., Chen Z. Q., “Overlap integral in abnormal guided acousto-optic interaction,” Journal of Electromagnetic Waves and Applications, 20(10), 1351-1356 (2006).

[25]Fan G. F., Ning J. P., Shang L. J., Han Q., Chen Z. Q., “Theoretical analysis and design of non-collinear guided-wave acousto-optic devices,” Journal of Electromagnetic Waves and Applications, 20(13), 1837-1844 (2006).

[26]Fan Guofang, Ning Jiping, Shang Lianju, Han Qun, Chen Zhiqiang, “The optimum optical penetration depth for high diffraction efficiency in guided acousto-optic devices,” Journal of Materials Science: Materials in Electronics, 17(4), 273-276 (2006).

[27]Qun Han, Jiping Ning, Zhiqiang Chen, Lianju Shang, Guofang Fan, “An efficient shooting method for fibre Raman amplifier design,” Journal of Optics A: Pure and Applied Optics, 7(8), 386-390 (2005).

[28]Han Qun, Ning Ji-Ping, Chen Zhi-Qiang, Shang Lian-Ju, “A novel method for multi-pumped fibre raman amplier gain adjustment,” Chinese Physics Letters, 22(5), 1148-1151 (2005).

[29]Guofang Fan, Jiping Ning, Qun Han, Lianju Shang, Zhiqiang Chen, Dan Luo, Jin Liu, “An improved ray approximation method to design the single-mode 3-D optical waveguide,” Optics Communications, 271(2), 421-423 (2007).

[30]Guofang Fan, Jiping Ning, Enbang Li, Yuan Li, Qun Han, Lianju Shang, Zhiqiang Chen, “Relationship between Bragg bandwidth and acoustic aperture of guided acoustooptic interaction,” Applied Physics Letters, 88(19), 191102 1-2 (2006).

Projects:

[1]A research of Q-switched all-fiber lasers, (Number: 107-61702), Doctoral foundation of Qufu Teachers' University, 07/2009-05/2014, Project leader.

[2]A research of solid state lasers pumped by diode-lasers, (Number: 107-61701), Basic foundation of Qufu Teachers' University, 09/2002-06/2005, Project leader.

[3]A characteristic research of an all-solid state mode-locked laser emitting at 1.3µm, (Number: KF1103), Open Project of State Key laboratory of Crystal Material in Shandong University, 11/2011-11/2014, The second place.

[4]A characteristic research of a novel all-solid state mode-locked laser, (Number: J11LA12), Science and technology planning project for the Universities of Shandong Province, 06/2011-06/2014, The second place.

[5]A research of an all-solid state mode-locked laser emitting at 1.3µm-1.5µm, (Number: 2011GGH20210), Science and technology development project of Shandong Province, 01/2011-11/2013, The second place.

Awards:

[1]Theoretical and experimental research of pulsed fiber lasers, The third prize of Natural Science Award, Government of Tianjin city, China, 01/2010, The fourth place.

[2]National mathematical contest in modeling, Instructional prize in Shandong division, Shandong province office of education, 12/2012, The first place.