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Yanfei Lü

Publish date: 2016-06-28  | [Close window]
Dr. Yanfei Lü is a professor and doctoral supervisor, born in Qinggang County, Heilongjiang Province, February 1976. As an outstanding academic leader, Prof. Lü was introduced into the Department of Physics and Astronomy of the Yunnan University in June 2014, and selected into high-end technology talent introduction plan of Yunnan in August 2015. At present, Prof. Lü is mainly engaged in laser physics, all solid state laser and nonlinear optical frequency conversion technology; design of diffractive optical elements and its application in laser resonator; generation, control and propagation characteristics of hollow laser beam; and the study of longitudinal wave laser.
吕彦飞
Prof. Lü has carried out pioneering scientific research and engineering practice in the field of Laser and Optoelectronic Technology, achieved a number of research results with creativity and high international influence, and chaired and completed more than 30 research projects, including the national level, provincial and ministerial level and horizontal class. Being a project leader, Prof. Lü’s research funds accumulate more than ¥ 30 million. As the first author or the corresponding author, he has published more than 70 papers retrieved by SCI, 12 papers of which are included in ESI as high frequency cited papers whose citing frequency is in the world's top 1% in the corresponding subjects during the past ten years. The number of others’ citing times is more than 2500. Prof. Lü is shortlisted for Most Cited Chinese Researchers released by Elsevier during two consecutive years (2014 and 2015), which means that the scholar has a world-class influence in the field of his research. He has been awarded 11 national invention patents (Personal ranking No.1), once of the second prize of Provincial Natural Science Academic Achievements (Personal ranking No.1), once of the second prize of Provincial Science and technology (Personal ranking No.1), a prize of scientific research innovation award from Chinese Academy of Sciences (Personal ranking No.1). At present, Prof. Lü is an expert in National Natural Science Fund Committee, and a reviewer for a variety of famous optical journals at home and abroad, such as Optics Letters and Optics Express.
Laboratory site: Room 3601 and 3602, School of Physics and Astronomy

Education and work experiences
Jun. 2014 to today,
Professor and Doctoral supervisor, Yunnan University.
Sept. 2013 to Jun. 2014,
Professor and Doctoral supervisor, Changchun University of Science and
Technology (originating from Changchun Institute of Optics and Fine Mechanics).
Mar. 2006 to Aug. 2013,
Lecturer, Post-doctor, Associate professor, Changchun University of Science and Technology.
Mar. 2003 to Mar. 2006,
For doctor's degree, optical profession, Changchun Institute of Optics and Fine Mechanics, Chinese Academy of Sciences.
Sept. 2001 to Mar. 2003,
Master of Engineering (straight doctor), Optical engineering profession, Changchun Institute of Optics and Fine Mechanics, Chinese Academy of Sciences.
Sept. 1997 to Jul. 2001,
For Bachelor of Engineering, Optical technology and optoelectronic instrumentation, Changchun Institute of Optics and Fine Mechanics.

Honors and awards
1. 2016 Young talent cultivation plan of Yunnan University.
2. 2015 High-end technology talent introduction plan of Yunnan Province.
3. 2015 Most Cited Chinese Researchers.
4. 2014 Most Cited Chinese Researchers.
5. 2014 The 2nd prize, Provincial Science and technology (Personal ranking No.1).
6. 2011 The 2nd prize, Provincial Natural Science Academic Achievements (Personal ranking No.1).
7. 2011 The excellent post doctor in China.
8. 2010 Top 100 Most Cited Chinese Papers Published in International Journals.
9. 2010 The excellent paper award for optical journals, ‘Daheng cup’.
10. 2005 Scientific research innovation award from Chinese Academy of Sciences (Personal ranking No.1).

The main research interests
1. Laser physics, all solid state laser and nonlinear optical frequency conversion technology.
2. Design of diffractive optical elements and its application in laser optical resonator.
3. Generation, control and propagation characteristics of hollow laser beam.
4. Study of longitudinal wave laser.

Research projects
1. National Natural Science Foundation of China (Project name: Research on rotating symmetric polarization hollow laser, Funding: ¥ 780,000, Ongoing project).
2. National Natural Science Foundation of China (Project name: Study on the double half Gauss hollow laser based on the mode selection of pure phase diffractive optical elements, Funding: ¥ 760,000, Ongoing project).
3. National Natural Science Foundation of China (Project name: Study on adaptive thermal compensation and thermal modulation Q technology of electro optic crystal lenses, Funding: ¥ 280,000, Completed project).
4. High-end technology talent introduction plan of Yunnan (Project name: Development of all solid state axial symmetrical polarization hollow laser, Funding: ¥ 3,250,000, Ongoing project).
5. Key project of applied basic research program of Yunnan Province (Project name: Research on all solid state anti Gauss rotation symmetric polarized laser, Funding: ¥ 500,000, Ongoing project).
6. Young talent cultivation plan of Yunnan University (Funding: ¥ 300,000, Ongoing project).
7. National High-Tech Research and Development Program of China, sub-topic of 863 Program, (Project name: Study on XX and the mechanism of all solid state XX, Funding: ¥ 700,000, Completed project).
8. National High-Tech Research and Development Program of China, sub-topic of 973 Program, (Project name: Development of XX laser, Funding: ¥ 120,000, Completed project).
9. China Postdoctoral Science Foundation (Project name: Study on thermal lens technique for dynamic compensation of laser crystal, Funding: ¥ 50,000, Completed project).
10. Major scientific and technological achievements transformation project of provincial science and Technology Department (Project name: Development of high power laser all solid state 589nm yellow laser pumped by intra-cavity heat booster, Funding: ¥ 3,000,000, Completed project).
11. Provincial Science and Technology Department of patent transformation project (Project name: Crystal lens adaptive compensation laser with thermal lens, Funding: ¥ 500,000, Completed project).
12. Provincial Youth Science Foundation Project (Project name: Research on technology of all solid quasi three level intra-cavity pump, Funding: ¥ 100,000, Completed project).
13. Provincial Natural Science Fund Programs (Project name: Study on the application of pure phase diffractive optical elements in the laser resonator, Funding: ¥ 100,000, Completed project).
14. Provincial Department of Education Project (Project name: Study on the optical absorption of thin film solar cells based on surface plasma excitation, Funding: ¥ 50,000, Completed project).
15. China Weapon Project (Project name: XXXX laser technique, Funding: ¥ 200,000, Completed project).
16. China Weapon Project (Project name: 885nm direct ND:YAG XX laser, Funding: ¥ 190,000, Completed project).
17. Patent Transfer Project (Project name: Passive optical distance measuring method and device without baseline optical ring imaging, Funding: ¥ 1,000,000, Completed project).
18. Horizontal Scientific Research Project: I have presided over horizontal projects more than 20, including military, medical, industrial and scientific research and other fields, having been supported funds accumulated more than ¥ 15 million.

Representative works:
1. Yanfei Lü*(*corresponding author), Xihe Zhang, Shutao Li, Jing Xia, Weibo Cheng, and Zheng Xiong, "All-solid-state cw sodium D2 resonance radiation based on intracavity frequency-doubled self-Raman laser operation in double-end diffusion-bonded Nd3+:LuVO4 crystal," Optics Letters, 35, 2964-2966 (2010).
2. Yanfei Lü*, Jing Xia, Weibo Cheng, Jifeng Chen, Guobin Ning, Zuoliang Liang, "Diode-pumped cw Nd:YAG three-level laser at 869 nm, " Optics Letters, 35, 3670-3672 (2010).
3. Yanfei Lü*, Lianshui Zhao, Pei Zhai, Jing Xia, Shutao Li, and Xihong Fu, "Quasi-three-level neodymium-doped yttrium aluminum garnet laser emitting at 885 nm," Optics Letters, 2012, 37 (15): 3177-3179.
4. Yanfei Lü*, Pei Zhai, Jing Xia, Xihong Fu, and Shutao Li, "Simultaneous orthogonal polarized dual-wavelength continuous-wave laser operation at 1079.5 nm and 1064.5 nm in Nd:YAlO3 and their sum-frequency mixing," Journal of the Optical Society of America B, 2012, 29 (9): 2352-2356.
5. Yanfei Lü*, Xihe Zhang, Weibo Cheng, and Jing Xia, "All-solid-state cw frequency-doubling Nd:YLiF4/LBO blue laser with 4.33 W output power at 454 nm under in-band diode pumping at 880 nm," Applied Optics, 49, 4096-4099 (2010).
6. Yanfei Lü*, Xihe Zhang, Jing Xia, and Xinhua Fu, "Diode-pumped continuous-wave Nd:LuVO4 laser emitting at 1089 nm based on the 4F3/2-4I11/2 transition," Applied Optics, 49, 3986-3989 (2010).
7. Y. F. Lü*, X.H. Zhang, J. Xia, R. Chen, G.Y. Jin, J.G. Wang, C.L. Li, and Z.Y. Ma, "981 nm Yb:KYW laser intracavity pumped at 912 nm and frequency-doubling for an emission at 490.5 nm," Laser Physics Letters, 2010, 7(5):343-346.
8. Yan-Fei Lü*, Jing Xia, Jun-Guang Wang, Xi-He Zhang, Lin Bao, Hui Quan, Xiao-Dong Yin, "Highly efficient Nd:GdVO4/BiBO laser at 456 nm under direct 880 nm diode laser pumping, Optics Communications," 2009, 282: 4793-4795.
9. Yan-Fei Lü*, Jing Xia, Jun-Guang Wang, Guan-Cheng Sun, Xi-He Zhang, An-Feng Zhang, Xiao-Dong Yin, Lin Bao, Hui Quan, "High-efficiency Nd:GdVO4 laser at 1341 nm under 880 nm diode laser pumping into the emitting level," Optics Communications, 2009, 282: 3565-3567.
10. Yan-Fei Lü*, Xi-He Zhang, An-Feng Zhang, Xiao-Dong Yin, Jing Xia, "Efficient 1047 nm CW laser emission of Nd:YLF under direct pumping into the emitting level," Optics Communications, 2010, 283:1877-1879.
11. Yan-Fei Lü*, Xi-He Zhang, Jing Xia, Chang-Li Li, Zhen-Ming Zhao, Zhi-Teng Li, "Diode-pumped Nd:LuVO4-Nd:YLiF4 crystals blue laser at 489 nm by intracavity sum-frequency-mixing," Optics Communications, 2010, 283:3067-3069.
12. Yanfei Lü*, Lianshui Zhao, Pei Zhai, Jing Xia, Xihong Fu, and Shutao Li, "Simultaneous three-wavelength continuous-wave laser at 946 nm, 1319 nm and 1064 nm in Nd:YAG," Optics Communications, 2013, 286 (1): 257-260.
13. Y.F. Lü*, X.H. Zhang, J.F. Chen, G.C. Sun, and Z.M. Zhao, "All-solid-state Nd:LuVO4 laser operating at 1066 nm and 1343 nm under diode pumping into the emitting level," Laser Physics Letters, 2010, 7(10): 699-702.
14. Y.F. Lü*, J. Xia, X.H. Zhang, A.F. Zhang, J.G. Wang, L. Bao, X.D. Yin, "High-efficiency direct-pumped Nd:YLF laser operating at 1321 nm," Applied Physics B, 2010, 98: 305-309.
15. Y. F. Lü*, X. H. Zhang, X. D. Yin, J. Xia, A. F. Zhang, J. Q. Lin, "Highly efficient continuous-wave intracavity frequency-doubled Nd:YVO4-LBO laser at 457 nm under diode pumping into the emitting level 4F3/2," Applied Physics B, 2010, 99: 115-119.
16. Y.F. Lü*, X.D. Yin, J. Xia, L. Bao, and X.H. Zhang, "All-solid-state continuous-wave doubly resonant all-intracavity sum-frequency mixing blue laser at 488 nm," Laser Physics Letters, 2009, 6 (12): 860-863.
17. Y.F. Lü*, X.H. Zhang, J. Xia, A.F. Zhang, X.D. Yin, and L. Bao, "Highly efficient continuous-wave 912 nm Nd:GdVO4 laser emission under direct 880 nm pumping," Laser Physics Letters, 2009, 6(11):796-799.
18. J. Xia, Y.F. Lü*, X.H. Zhang, W.B. Cheng, Z. Xiong, J. Lu, L.J. Xu, G.C. Sun, Z.M. Zhao, and Y. Tan, "All-solid-state CW Nd:KGd(WO4)2 self-Raman laser at 561 nm by intracavity sum-frequency mixing of fundamental and first-Stokes wavelengths," Laser Physics Letters, 2011, 8(1):21-23.
19. Yan-Fei Lü*, Xi-He Zhang, Jing Xia, Xiao-Dong Yin, An-Feng Zhang, Lin Bao, Wang Lü, "High-efficiency direct-pumped Nd:YVO4-LBO laser operating at 671nm," Optics & Laser Technology, 2010, 42: 522-525.
20. Yanfei Lü*, Jing Zhang, Huilong Liu, Jing Xia, Xihong Fu, and Anfeng Zhang, "Fine wavelength control in 1.3 μm Nd:YAG lasers by electro-optical crystal lens," Journal of Applied Physics, 2014, 115 (7), 073102.
21. Yanfei Lü*, Jing Xia, Huilong Liu, and Xiaoyun Pu, "Simultaneous triple 914 nm, 1084 nm, and 1086 nm operation of a diode-pumped Nd:YVO4 laser," Journal of Applied Physics, 2014, 116 (16):163107.
22. Yanfei Lü*, Jing Xia, Xihong Fu, Anfeng Zhang, Huilong Liu, and Jing Zhang, "Diode-pumped orthogonally polarized Nd:LuVO4 lasers based on the 4F3/2–4I11/2 transition," Journal of the Optical Society of America B, 2014, 31 (4): 898-903.
23. Yanfei Lü*, Jing Zhang, Jing Xia, and Huilong Liu, "Diode-Pumped Quasi-Three-Level Nd:YVO4 Laser with Orthogonally Polarized Emission," IEEE Photonics Technology Letters, 2014, 26 (7): 656-659.
24. Hui-Long Liu, Yuan Dong, Jing Zhang, Shu-Tao Li, and Yan-Fei Lü*, "The diffraction propagation properties of double-half inverse Gaussian hollow beams," Optics & Laser Technology, 2014, 56 (3): 404-408.
25. Yanfei Lü*, Jing Xia, Jing Zhang, Xihong Fu, and Huilong Liu, "Orthogonally polarized dual-wavelength Nd:YAlO3 laser at 1341 and 1339 nm and sum-frequency mixing for an emission at 670 nm," Applied Optics, 2014, 53 (23): 5141-5146.
26. Huilong Liu, Yanfei Lü*, Jing Zhang, Jing Xia, Xiaoyun Pu, Yuan Dong, Shutao Li, Xihong Fu, Angfeng Zhang, Changjia Wang, Yong Tan, and Xihe Zhang, "Research on propagation properties of control able hollow flat-topped beams in turbulent atmosphere based on ABCD matrix," Optics Communications, 2015, 334 (1): 133-140.
27. Jing Xia, Yanfei Lü*, Huilong Liu, and Xiaoyun Pu, "Diode-pumped Pr3+:LiYF4 visible dual-wavelength laser," Optics Communications, 2015, 334(1): 160–163.
28. Y.F. Lü*, J. Xia, J.Q. Lin, X. Gao, Y. Dong, L.J. Xu, G.C. Sun, Z.M. Zhao, Y. Tan, J.F. Chen, Z.X. Liu, C.L. Li, H.X. Cai, Z.T. Liu, Z.Y. Ma, and G.B. Ning, "Diode-pumped CW frequency-doubled Nd:CNGG-BiBO blue laser at 468 nm," Laser Physics Letters, 2011, 8 (2): 103-106.
29. Huilong Liu, Yanfei Lü*, Jing Xia, Xiaoyun and Li Zhang, Flat-topped vortex hollow beam and its propagation properties, Journal of Optics, 2015, 17(7): 075606 (7pp).
30. Huilong Liu, Yanfei Lü*, JingXia, Xiaoyun Pu, Li Zhang, "Propagation of an Airy-Gaussian beam passing through the ABCD optical system with a rectangular aperture," Optics Communications, 2015, 355 (15): 438-444.

Patents
1. Lü Yanfei, Dong Yuan, Li Shutao, Liu Dong, Liu Huilong, Jin Guangyong, Zhang Xihe, Device for detecting interference image by coaxial detecting light normal incidence, China patent, Application number: ZL201210532930.2
2. Lü Yanfei, Dong Yuan, Li Shutao, Jin Guangyong, Zhang Xihe, Passive optical distance measuring method and device without baseline optical ring imaging, China patent, Application number: ZL201110300605.9
3. Lü Yanfei, Zhang Xihe, Jiang Zhongming, Ning GuoBin, crystal lens adaptive compensation thermal lens laser resonator, China patent, Application number: ZL200810051540.7
4. Lü Yanfei, Xia Jing, An available resonator of hollow laser beam, China patent, Application number: ZL201010274086.9
5. Lü Yanfei, JingXia, All solid state tandem pumped laser, China patent, Application number: ZL201010274074.6
6. Lü Yanfei, Chen Jifeng, a tunable Q resonator with a high peak power output of an electro-optic crystal lens. China patent, Application number: ZL201010138240.X
7. Lü Yanfei, Zhang Xihe, Yao Zhihai, Lu Jun, Li Changli, Dual channel passively modulated Q pulse sum-frequency laser pumped by semiconductor laser, China patent, Application number: ZL200610098657.1
8. Lü Yanfei, Zhang Xihe, Yao Zhihai, Lu Jun, Li Changli, Folded single channel passive modulated Q pulse sum-frequency pumped by semiconductor laser, China patent, Application number: ZL200610098655.2
9. Lü Yanfei, Zhang Xihe, Yao Zhihai, Lu Jun, Li Changli, Single frequency continuous laser of sum-requency pumped by semiconductor laser, China patent, Application number: ZL200610098656.7
10. Lü Yanfei, Tan Huiming, Folded type compound cavity laser of sum-frequency pumped by semiconductor laser, China patent, Application number: ZL200410011043.6
11. Lü Yanfei, Tan Huiming, All solid state compound cavity laser of sum-frequency pumped by semiconductor laser, China patent, Application number: ZL200410011041.7

Number of postgraduate student under my coaching
2 graduated doctors and 1 learning doctor; 26 graduated masters and 3 learning masters

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