Chin. Phys. Lett.  2008, Vol. 25 Issue (1): 119-121    DOI:
Original Articles |
High Power Continuous-Wave and Acousto-Optic Q-Switched Nd:GdVO4 Laser Operated at 912nm
GAO Jing;YU Xin;CHEN Fei;LI Xu-Dong;ZHANG Zhen;YU Jun-Hua;WANG Yue-Zhu
Institute of Opto-Electronics, Harbin Institute of Technology, Harbin 150001
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GAO Jing, YU Xin, CHEN Fei et al  2008 Chin. Phys. Lett. 25 119-121
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Abstract We present a high power and efficient operation of the 4F3/2 to4I9/2 ransition in Nd:GdVO4 at 912nm. In the cw mode, the maximum output power of 8.6W is achieved when the incident pump power is 40.3W, leading to a slope efficiency of 33.3% and an optical-optical efficiency of 21.3%. To the best of our knowledge, this is the highest cw laser power at 912,nm obtained with the conventional Nd:GdVO4 crystal. Pulsed operation of 912nm laser has also been realized by inserting a small acousto-optic (A-O) Q-Switch inside the
resonator. As a result, the minimal pulse width of 20ns and the average laser power 1.43W at the repetition rate of 10kHz are obtained, corresponding to 7.1kW peak power. We believe that this is the highest laser peak power at 912nm. Furthermore, duration of 65ns has also been acquired when the repetition rate is 100kHz.
Keywords: 42.55.Xi      42.60.Gd      42.62.Be      42.60.Pk     
Received: 12 October 2007      Published: 27 December 2007
PACS:  42.55.Xi (Diode-pumped lasers)  
  42.60.Gd (Q-switching)  
  42.62.Be (Biological and medical applications)  
  42.60.Pk (Continuous operation)  
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https://cpl.iphy.ac.cn/       OR      https://cpl.iphy.ac.cn/Y2008/V25/I1/0119
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GAO Jing
YU Xin
CHEN Fei
LI Xu-Dong
ZHANG Zhen
YU Jun-Hua
WANG Yue-Zhu
[1] Zhou R, Zhao S Y, Cai Z Q et al 2005 Chin. Phys.Lett. 13 10115
[2] R Zhou, E B Li, H F Li et al 2006 Opt. Lett. 311869
[3] J Gao, X Yu, J B Peng et al 2007 Conference on Laser andElectro-Optics (Baltimore, USA, 6--11 May 2007) paper CFA1
[4] J Gao, J Speiser and A Giesen 2005 Advanced Solid-StatePhotonics (Vienna, Austria, 6--9 February 2005) paper TuB34
[5] J Gao, M Larionov, J Speiser et al 2002 Conference on Laserand Electro-Optics (Long Beach, USA, 19--24 May 2002) p 175
[6] J W Dawson, R Beach, A Drobshoff et al 2004 AdvancedSolid-State Photonics (Santa Fe, USA, 1--4 February 2004) paper MD8
[7] T J Kane, G Keaton, M A Arbore et al 2004 AdvancedSolid-State Photonics (Santa Fe, USA, 1--4 February 2004) paper MD7
[8] T Y Fan and R L Byer 1987 IEEE J. Quantum Electron. 23 605
[9] P Zeller and P Peuser 2000 Opt. Lett. 25 35
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