Title :
The Performance of Acoustic-Optical
-switched Mode-Locking 1.34
m Nd:GdVO
Author :
Zhang, Bai-Tao ; Yang, Jian-Fei ; He, Jing-liang ; Huang, Hai-Tao ; Zuo, Chun-Hua ; Xu, Jin-Long ; Yang, Xiu-Qin ; Zhao, Shuang
Author_Institution :
State Key Lab. of Crystal Mater., Shandong Univ., Ji´´nan, China
Abstract :
A diode-end-pumped Q -switched mode-locking Nd:GdVO4 laser operating at 1.34 μm with an acousto-optical (AO) Q-switch in a compact V-type cavity was realized in our experiment for the first time. When the AO Q-switch repetition rate was 10 kHz, the maximum average output power of 750 mW and the pulse energy of 75 μ were obtained at the maximum incident pump power of 9 W. The mode-locking modulation depth of about 100% was obtained at certain pump power over the threshold. The mode-locked pulse inside in the Q-switched pulse had a repetition rate of 341 MHz, and its average pulsewidth was estimated to be about 350 ps. A developed rate equation model for the Q -switched and mode-locked lasers with an AO Q-switch were proposed by using the hyperbolic secant functional methods. The results of numerical calculations of the rate equations were in good agreement with the experimental results.
Keywords :
Q-switching; acousto-optical switches; gadolinium compounds; laser mode locking; neodymium; optical pumping; solid lasers; GdVO4:Nd; V-type cavity; acoustic-optical Q-switched mode locking laser; acousto-optical Q-switch; diode end pumped Q-switched mode locking laser; energy 75 μJ; hyperbolic secant function; wavelength 1.34 μm; Diodes; Electrooptic modulators; Equations; Fiber lasers; Laser mode locking; Laser transitions; Power generation; Pulse modulation; Pump lasers; Space vector pulse width modulation; 1.34 $mu{hbox {m}}$; Mode-locked; Nd:GdVO$_{4}$;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2009.2024331