Title :
Compact Nd:YAlO
/RbTiOPO
Based Intra-Cavity Optical Parametric Oscillator Emit at 1.65
Author :
Hai-Yong Zhu ; Yan-Min Duan ; Hong-Yan Wang ; Zhen-Hua Shao ; Yao-Ju Zhang ; Ge Zhang ; Jian Zhang ; Ding-Yuan Tang
Author_Institution :
Coll. of Phys. & Electron. Inf., Wenzhou Univ., Wenzhou, China
Abstract :
An intra-cavity optical parametric oscillator based on RbTiOPO4 (RTP) crystal simultaneous output eye-safe light and mid-infrared wavelength light was demonstrated. An laser diode end pumped acousto-optic Q-switched Nd:YAlO3 laser at 1.08 μm was used as the pump source. At an incident pump power of 8.7 W and a pulse repetition frequency of 20 kHz, total average output power up to 1.12 W (890 mW of signal light at 1.65 μm with and 230 mW of idler light at 3.13 μm) was obtained, with the diode to OPO total output conversion efficiency of 12.9%. The pulse width is about 4.5 ns and spectral linewidth is about 0.5 nm for the signal light. Compare to noncritical phase matching optical parametric oscillator using its isomorph KTP crystal, RTP crystal can extend signal wavelength up to 1.65 μm and absorb less idler wavelength.
Keywords :
Q-switching; acousto-optical switches; neodymium; optical parametric oscillators; optical pumping; rubidium compounds; solid lasers; spectral line breadth; yttrium compounds; OPO total output conversion efficiency; YAlO3:Nd-RbTiOPO4; compact Nd:YAlO3-RbTiOPO4 based intracavity optical parametric oscillator; efficiency 12.9 percent; frequency 20 kHz; incident pump power; laser diode end pumped acousto-optic Q-switched Nd:YAlO3 laser; mid-infrared wavelength light; output eye-safe light; output power; power 230 mW; power 8.7 W; power 890 mW; pulse repetition frequency; pulse width; pump source; signal light; signal wavelength; spectral linewidth; wavelength 1.08 mum; wavelength 1.65 mum; wavelength 3.13 mum; Crystals; Educational institutions; Frequency conversion; Laser excitation; Nonlinear optics; Physics; Pump lasers; Optical parametric oscillator (OPO); RbTiOPO4 crystal; eye-safer laser and non-critical phase matching;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2014.2302352